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165.  

Mechanically Interlocked [an]Daisy Chain Adhesives with Simultaneously Enhanced Interfacial Adhesion and Cohesion

(VIP Paper)

Wang, Y.#; Liu, G.#; Zhao, J.#; Zhang, Z.; Zhang, H.; Ding, Y.; Zhang, X.; Liu, Z.; Yu, W.; Yan, X.*

Angew. Chem. Int. Ed. 2024, 63, e202409705.

Mechanically Interlocked [an]Daisy Chain Adhesives with Simultaneously Enhanced Interfacial Adhesion and Cohesion
164.  

Dynamically Cross-linked Oligo[2]rotaxane Networks Mediated by Metal-Coordination

Bai, R.; Wang, W.; Gao, W.; Yang, M.; Zhang, X.; Wang, C.; Fan, Z.; Yang, L.; Zhang, Z.*; Yan, X.*

Angew. Chem. Int. Ed. 2024, 63, e202410127.

Dynamically Cross-linked Oligo[2]rotaxane Networks Mediated by Metal-Coordination
163.  

What Can Topology Bring to Chemistry?

Wang, W.; Zhou, S.; Yu, X.; Guo, Q.-H.*; Ma, Y.*; Song, J.*; Zhang, L.*; Yan, X.*; Han, L.*; Liao, Q.*; Li, X.*; Zhang, W.-B.*; Mai, Y.*; Zhang, S.*; Che, S.*; Yang, H.-B.*; Fu, X.*; Wang, M.-X.

CCS Chem. 2024, 6, 2084-2109.

What Can Topology Bring to Chemistry?
162.  

Stimuli-Responsive Mechanically Interlocked Polymer Wrinkles

Yang, M.#; Chen, S.#; Zhang, Z.; Cheng, L.; Zhao, J.; Bai, R.; Wang, W.; Gao, W.; Yu, W.; Jiang, X.*; Yan, X.*

Nat. Commun. 2024, 15, 5760.

Stimuli-Responsive Mechanically Interlocked Polymer Wrinkles
161.  

Mechanically Interlocked Polyrotaxane Networks with Collective Motions of Multiple Main-Chain Mechanical Bonds

(VIP Paper)

Yang, L.; Wang, Y.; Liu, G.; Zhao, J.; Cheng, L.; Zhang, Z.; Bai, R.; Liu, Y.; Yang, M.; Yu, W.; Yan, X.*

Angew. Chem. Int. Ed. 2024, 63, e202410834.

Mechanically Interlocked Polyrotaxane Networks with Collective Motions of Multiple Main-Chain Mechanical Bonds
160.  

Development of Fluorenyl-based Copolyimines with Adjustable Mechanical Properties, Recyclability and Friction Resistance

(Invited Contribution to a Special Issue on "Creation of New Supramolecular Matter")

Wang, H.; Huang, Q.; Liu, C.; Hong, W.; Li, J.; Ma, J.; Yu, P.*; Wang, C.*; Yan, X.*

Chem. Eur. J. 2024, 30, e202401481.

Development of Fluorenyl-based Copolyimines with Adjustable Mechanical Properties, Recyclability and Friction Resistance
159.  

A Stretchable and Tough Graphene Film Enabled by Mechanical Bond

Wang, C.; Gao, B.; Fang, F.; Qi, W.; Yan, G.; Zhao, J.; Wang, W.; Bai, R.; Zhang, Z.; Zhang, Z.; Zhang, W.; Yan, X.*

Angew. Chem. Int. Ed. 2024, 63, e202404481.

A Stretchable and Tough Graphene Film Enabled by Mechanical Bond
158.  

Hyperbranched Vitrimer for Ultrahigh Energy Dissipation

Cheng, L.; Zhao, J.; Xiong, Z.; Liu, S.; Yan, X.; Yu, W.*

Angew. Chem. Int. Ed. 2024, 63, e202406937.

Hyperbranched Vitrimer for Ultrahigh Energy Dissipation
157.  

Anion-Coordination Foldamer-based Polymer Network: from Molecular Spring to Elastomer

Qin, J.#; Wang, Y.#; Wang, T.; Wang, N.; Xu, W.; Cheng, L.; Yu, W.; Yan, X.; Gao, L.; Zheng, B.*; Wu, B.*

Angew. Chem. Int. Ed. 2024, 63, e202400989.

Anion-Coordination Foldamer-based Polymer Network: from Molecular Spring to Elastomer
156.  

Strengthening and Toughening Styrene-butadiene Rubber by Mechanically Interlocked Cross-links

Wang, Y.; Yang, L.; Cheng, L.; Zhao, J.; Bai, R.; Wang, W.; Qu, S.; Zhang, Z.*; Yu, W.; Yan, X.*

Sci. China Chem. 2024, DOI: 10.1007/s11426-024-2049-0.

Strengthening and Toughening Styrene-butadiene Rubber by Mechanically Interlocked Cross-links
155.  

A Crown-Ether-based Elastomer Bearing Loop Structures with Dissipating Characteristics and Enhanced Mechanical Performance

Zhao, D.#; Zhang, Z.#; Wei, Z.#; Zhao, J.; Li, T.*; Yan, X.*

Angew. Chem. Int. Ed. 2024, 63, e202402394.

A Crown-Ether-based Elastomer Bearing Loop Structures with Dissipating Characteristics and Enhanced Mechanical Performance
154.  

Mechanically Interlocked Polymers with Dense Mechanical Bonds

Zhang, Z.; Zhao, J. Yan, X.*

Acc. Chem. Res. 2024, 57, 992-1006.

Mechanically Interlocked Polymers with Dense Mechanical Bonds
153.  

Mechanically Interlocked Interphase with Energy Dissipation and Fast Li-Ion Transport for High-Capacity Lithium Metal Batteries

Shi, Z.#; Wang, Y.#; Yue, X.*; Zhao, J.; Fang, M.; Liu, J.; Chen, Y.; Dong, Y.; Yan, X.*; Liang, Z.*

Adv. Mater. 2024, 24, 2401711.

Mechanically Interlocked Interphase with Energy Dissipation and Fast Li-Ion Transport for High-Capacity Lithium Metal Batteries
152.  

Assembly and Utility of a Drawstring-Mimetic Supramolecular Complex

Dong, X.; Zhang, Z.; Xiao, H.; Liu, G.; Lei, S.-N.; Wang, Z.; Yan, X.; Wang, S.; Tung, C.-H.; Wu, L.-Z.; Cong, H.*

Angew. Chem. Int. Ed. 2024, 63, e202318368.

Assembly and Utility of a Drawstring-Mimetic Supramolecular Complex
151.  

Synergistic Dual Dynamic Bonds in Covalent Adaptable Networks

(Mini-review, Top Ten Most Downloaded Article of 2023)

Zhao, J.; Zhang, Z.; Wang, C.; Yan, X.*

CCS Chem. 2024, 6, 41-56.

Synergistic Dual Dynamic Bonds in Covalent Adaptable Networks
150.  

Water-Driven Malleable, Weldable and Eco-Friendly Recyclable Carbon Fiber Reinforced Dynamic Composites

(Invited contribution for the special issue of "Emerging Themes in Polymer Science")

Yu, P.*; Huang, Q.; Wang, Y.; Peng, W.; Jia, Z.; Wang, H.; Ma, J.; Wang, C.*; Yan, X.*

Chinese J. Chem. 2024, 42, 516-522.

Water-Driven Malleable, Weldable and Eco-Friendly Recyclable Carbon Fiber Reinforced Dynamic Composites
149.  

A Polyimine Aerogel Separator with Electron Cloud Design to Boost Li-ion Transport for Stable Li Metal Batteries

Ding, L.#; Yue, X.#; Zhang, X.*; Chen, Y.; Liu, J.; Shi, Z.; Wang, Z.; Yan, X.*; Liang, Z.*

Proc. Natl. Acad. Sci. USA 2023, 120, e2314264120.

A Polyimine Aerogel Separator with Electron Cloud Design to Boost Li-ion Transport for Stable Li Metal Batteries
148.  

Phase Behavior and Liquid Crystalline Ordering of [2]Catenated Molecular Systems

Xie, X.; Wu, L.*; Sun, H.; Yan, X.; Zhu, X.

Macromolecules 2023, 56, 6189-6198.

Phase Behavior and Liquid Crystalline Ordering of [2]Catenated Molecular Systems
147.  

Mechanically Interlocked [2]Rotaxane Aerogels with Tunable Morphologies and Mechanical Properties

(Hot Paper)

Luo, Z.; Zhang, X.*; Zhao, J.; Bai, R.; Wang, C.; Wang, Y.; Zhao, D.; Yan, X.*

Angew. Chem. Int. Ed. 2023, 62, e202306489.

Mechanically Interlocked [2]Rotaxane Aerogels with Tunable Morphologies and Mechanical Properties
146.  

Insights into the Correlation of Cross-linking Modes with Mechanical Properties for Dynamic Polymeric Networks

(VIP Paper)

Deng, J. (Undergraduate student); Bai, R.; Zhao, J.; Liu, G.; Zhang, Z.*; You, W.; Yu, W.; Yan, X.*

Angew. Chem. Int. Ed. 2023, 62, e202309058.

Insights into the Correlation of Cross-linking Modes with Mechanical Properties for Dynamic Polymeric Networks
145.  

Phototriggered Formation of a Supramolecular Polymer Network Based on Orthogonal H-Bonding and Host-Guest Recognition

(Invited contribution for a Themed Collection on “Polymer Science”)

Bai, R.; Yang, X.; Zhao, J.; Zhang, Z.*; Yan, X.*

Chem. Res. Chinese Universities 2023, 39, 777-781.

Phototriggered Formation of a Supramolecular Polymer Network Based on Orthogonal H-Bonding and Host-Guest Recognition
144.  

Metallacage-based Enhanced PDT Strategy for Bacterial Elimination via Inhibiting Endogenous NO Production

Huang, K.; Wang, J.; Zhuang, A.; Liu, Q.; Li, F.; Yuan, K.; Yang, Y.; Liu, Y.; Chang, H.; Liang, Y.; Sun, Y.; Yan, X.*; Tang, T.*; Stang, P. J.*; Yang, S.*

Proc. Natl. Acad. Sci. USA 2023, 120, e2218973120.

Metallacage-based Enhanced PDT Strategy for Bacterial Elimination via Inhibiting Endogenous NO Production
143.  

Neuromorphic Sensorimotor Loop Embodied by Monolithically Integrated, Low-Voltage, Soft E-skin

Wang, W.#; Jiang, Y.#; Zhong, D.#; Zhang, Z.#; Choudhury, S.; Lai, J.-C.; Gong, H.; Niu, S.; Yan, X.; Zheng, Y.; Shih, C.-C.; Ning, R.; Lin, Q.; Li, D.; Kim. Y.-H.; Kim, J.; Wang, Y.-X.; Zhao, C.; Xu, C.; Ji, X.; Nishio, Y.; Lyu, H.; Tok, J. B.-H.; Bao, Z.*

Science 2023, 380, 735-742.

Neuromorphic Sensorimotor Loop Embodied by Monolithically Integrated, Low-Voltage, Soft E-skin
142.  

Topological Effect on Fluorescence Emission of Tetraphenylethylene-based Metallacages

Liu, Y.#; Guo, Z.#; Guo, Y.; Li, G.; Yang, S.; Yan, X.*; Shen, Y.*; Wang, J.*

Chin. Chem. Lett. 2023, 34, 108531.

Topological Effect on Fluorescence Emission of Tetraphenylethylene-based Metallacages
141.  

Mechanically Interlocked [an]Daisy Chain Networks

Wang, Y.; Zhang, Z.; Zhang, H.; Zhao, J.; Liu, G.; Bai, R.; Liu, Y.; You, W.; Yu, W.; Yan, X.*

Chem 2023, 9, 2206-2221.

Mechanically Interlocked [an]Daisy Chain Networks
140.  

Oligo[2]catenane that Is Robust at Both the Microscopic and Macroscopic Scales

Bai, R.#; Zhang, Z.#; Di, W.#; Yang, X.; Zhao, J.; Ouyang, H.; Liu, G.; Zhang, X.; Cheng, L.; Cao, Y.; Yu, W.; Yan, X.*

J. Am. Chem. Soc. 2023, 145, 9011-9020.

Oligo[2]catenane that Is Robust at Both the Microscopic and Macroscopic Scales
139.  

Highly Strong and Tough Supramolecular Polymer Networks Enabled by Cryptand-Based Host-Guest Recognition

Liu, Y.; Wan, J.; Zhao, X.; Zhao, J.; Guo, Y.; Bai, R.; Zhang, Z.; Yu, W.; Gibson, H. W.; Yan, X.*

Angew. Chem. Int. Ed. 2023, 62, e202302370.

Highly Strong and Tough Supramolecular Polymer Networks Enabled by Cryptand-Based Host-Guest Recognition
138.  

A Universal Interface for Plug-and-Play Assembly of Stretchable Devices

(ESI Highly Cited Paper)

Jiang, Y.; Ji, S.; Sun, J.; Huang, J.; Li, Y.; Zou, G.; Salim, T.; Wang, C.; Li, W.; Jin, H.; Xu, J.; Wang, S.; Lei, T.; Yan, X.; Peh, W.; Yen, S.-C.; Liu, Z.; Yu, M.; Zhao, H.; Lu, Z.; Li, G.; Gao, H.; Liu, Z.*; Bao, Z.*; Chen, X.*

Nature 2023, 614, 456-462.

A Universal Interface for Plug-and-Play Assembly of Stretchable Devices
137.  

Technology Roadmap for Flexible Sensors

(ESI Highly Cited Paper; ESI Hot Paper)

Luo, Y.; 140 other coauthors; Chen, X.*

ACS Nano 2023, 17, 5211-5295.

Technology Roadmap for Flexible Sensors
136.  

Insights into the Correlation of Microscopic Motions of [c2]Daisy Chains with Macroscopic Mechanical Performance for Mechanically Interlocked Networks

Zhang, Z.#; You, W.#; Li, P.; Zhao, J.; Guo, Z.; Xu, T.; Chen, J.; Yu, W.; Yan, X.*

J. Am. Chem. Soc. 2023, 145, 567-578.

Insights into the Correlation of Microscopic Motions of [c2]Daisy Chains with Macroscopic Mechanical Performance for Mechanically Interlocked Networks
135.  

Woven Polymer Networks: from Crystalline to Elastomeric Materials

(Invited CONCEPT paper, Selected by the Editorial Office as an outstanding Review-type article)

Liu, Y.; Yan, X.*

Chem. Eur. J. 2023, 29, e202203365.

Woven Polymer Networks: from Crystalline to Elastomeric Materials
134.  

Self-Healing, Malleable, Ecofriendly Recyclable and Robust Polyimine Thermosets Derived from Trifluoromethyl Diphenoxybenzene Backbones

(Invited contribution)

Yu, P.*; Wang, H.; Wang, Y.; Liu, D.; Xin, Y.; Li, R.; Jia, X.; Liu, L.; Zhang, D.; Wang, C.*; Zhao, J.; Zhang, Z.; Yan, X.*

Chem. Eur. J. 2023, 29, e202203560.

Self-Healing, Malleable, Ecofriendly Recyclable and Robust Polyimine Thermosets Derived from Trifluoromethyl Diphenoxybenzene Backbones
133.  

Mechanically Tunable Supramolecular Polymer Networks with Different Triblock Backbones

(Invited contribution)

Yang, X.; Bai, R.; Zhang, Z.*; Liu, Y.*; Yan, X.*

J. Polym. Sci. 2023, 61, 1105-1110.

Mechanically Tunable Supramolecular Polymer Networks with Different Triblock Backbones
132.  

Durable Lithium Metal Anodes Enabled by Interfacial Layers Based on Mechanically Interlocked Networks Capable of Energy Dissipation

Zhao, J.#; Hong, M.#; Ju, Z.; Yan, X.; Gai, Y.; Liang, Z.*

Angew. Chem. Int. Ed. 2022, 61, e202214386.

Durable Lithium Metal Anodes Enabled by Interfacial Layers Based on Mechanically Interlocked Networks Capable of Energy Dissipation
131.  

编织聚合物

王泽钜, 绳新如, 李光锋*, 颜徐州*, 黄飞鹤*

高分子学报, 2022, 53, 1301-1315.

编织聚合物
130.  

Amplification of Integrated Microscopic Motions of High-Density [2]Rotaxanes in Mechanically Interlocked Networks

Yang, X.#; Cheng, L.#; Zhang, Z.#; Zhao, J.; Bai, R.; Guo, Z.; Yu, W.*; Yan, X.*

Nat. Commun. 2022, 13, 6654.

Amplification of Integrated Microscopic Motions of High-Density [2]Rotaxanes in Mechanically Interlocked Networks
129.  

Robust and Dynamic Polymer Networks Enabled by Woven Crosslinks

(Hot Paper)

Li, G.#; Zhao, J.#; Zhang, Z.*; Zhao, X.; Cheng, L.; Liu, Y.; Guo, Z.; Yu, W.; Yan, X.*

Angew. Chem. Int. Ed. 2022, 61, e202210078.

Robust and Dynamic Polymer Networks Enabled by Woven Crosslinks
128.  

Multiscale Supramolecular Polymer Network with Microphase-Separated Structure Enabled by Host-Guest Self-Sorting Recognitions

Yang, X.; Zhang, H.; Zhao, J.; Liu, Y.; Zhang, Z.*; Liu, Y.*; Yan, X.*

Chem. Eng. J. 2022, 450, 138135.

Multiscale Supramolecular Polymer Network with Microphase-Separated Structure Enabled by Host-Guest Self-Sorting Recognitions
127.  

Synergistic Covalent-and-Supramolecular Polymers with an Interwoven Topology

(Invited contribution for a Forum on “Applied Supramolecular Materials”)

Guo, Y.#; Liu, Y.#; Zhao, X.; Zhao, J.; Wang, Y.; Zhang, X.; Guo, Z.; Yan, X.*

ACS Appl. Mater. Interfaces 2023, 15, 25161–25172.

Synergistic Covalent-and-Supramolecular Polymers with an Interwoven Topology
126.  

协同的共价-超分子聚合物

(高分子优秀青年学者专辑-特邀专论,封面文章)

张照明,赵骏,颜徐州*

高分子学报202253,691-706.


协同的共价-超分子聚合物
125.  

Mechanically Interlocked Aerogels with Densely Rotaxanated Backbones

Zhang, X.; Liu, K.; Zhao, J.; Zhang, Z.; Luo, Z.; Guo, Y.; Zhang, H.; Wang, Y.; Bai, R.; Zhao, D.; Yang, X.; Liu, Y.; Yan, X.*

J. Am. Chem. Soc. 2022, 144, 11434–11443.

Mechanically Interlocked Aerogels with Densely Rotaxanated Backbones
124.  

Thermo-Responsive Topological Metamorphosis in Covalent-and-Supramolecular Polymer Architectures

(Invited paper for “Aggregate Emerging Investigators 2022” special issue)

Wang, Y.; Zhang, H.; Zhang, Z.; Zhao, J.; Bai, R.; Liu, Y.; Zhang, X.; Yan, X.*

Aggregate 2022, 3, e206.

Thermo-Responsive Topological Metamorphosis in Covalent-and-Supramolecular Polymer Architectures
123.  

A MOF-Armored Zinc-Peroxide Nanotheranostic Platform for Eradicating Drug Resistant Bacteria via Image-Guided and in situ Activated Photodynamic Therapy

Huang, K.#; Li, F.#; Yuan, K.; Yang, Y.; Chang, H.; Liang, Y.; Yan, X.; Zhao, J.*; Tang, T.*; Yang, S.*

Appl. Mater. Today 2022, 28, 101513.

A MOF-Armored Zinc-Peroxide Nanotheranostic Platform for Eradicating Drug Resistant Bacteria via Image-Guided and in situ Activated Photodynamic Therapy
122.  

Stretchable Poly[2]rotaxane Elastomers

(Invited Contribution)

Liu, K.; Zhang, X.; Zhao, D.; Bai, R.; Wang, Y.; Yang, X.; Zhao, J.; Zhang, H.; Yu, W.; Yan, X.*

Fundam. Res. 2022, 4, 300-306.

Stretchable Poly[2]rotaxane Elastomers
121.  

Mechanically Interlocked Networks Cross-linked by a Molecular Necklace

(ESI Highly Cited Paper)

Zhang, Z.; Zhao, J.; Guo, Z.; Zhang, H.; Pan, H.; Wu, Q.; You, W.; Yu, W.; Yan, X.*

Nat. Commun. 2022, 13, 1393.

Mechanically Interlocked Networks Cross-linked by a Molecular Necklace
120.  

Supramolecular Polymer Networks Crosslinked by Crown Ether-based Host-Guest Recognition: Dynamic Materials with Tailored Mechanical Properties in the Bulk

Bai, R.; Zhang, H.; Yang, X.; Zhao, J.; Wang, Y.; Zhang, Z.*; Yan, X.*

Polym. Chem. 2022, 13, 1253-1259.

Supramolecular Polymer Networks Crosslinked by Crown Ether-based Host-Guest Recognition: Dynamic Materials with Tailored Mechanical Properties in the Bulk
119.  

以服务国家重大战略需求为导向的基础学科专业建设探索和实践

——上海交通大学化学(强基计划)专业建设初试

魏霄,王开学,宰建陶,王冲,颜徐州,梁晶,钱雪峰*

大学化学202136,2108090.

以服务国家重大战略需求为导向的基础学科专业建设探索和实践
118.  

Weldable and Closed-Loop Recyclable Monolithic Dynamic Covalent Polymer Aerogels

Zhang, X.; Zhao, J.; Liu, K.; Li, G.; Zhao, D.; Zhang, Z.; Wan, J.; Yang, X.; Bai, R.; Wang, Y.; Zhang, W.*; Yan, X.*

Natl. Sci. Rev. 2022, 9, nwac012.

Weldable and Closed-Loop Recyclable Monolithic Dynamic Covalent Polymer Aerogels
117.  

Mechanically Interlocked Vitrimers

Zhao, J.; Zhang, Z.; Cheng, L.; Bai, R.; Zhao, D.; Wang, Y.; Yu, W.; Yan, X.*

J. Am. Chem. Soc. 2022, 144, 872-882.


Mechanically Interlocked Vitrimers
116.  

Synergistic Combination of ACQ and AIE Moieties to Enhance the Emission of Hexagonal Metallacycles

Wu, B.#; Guo, Z.#; Li, G.; Zhao, J.; Liu, Y.; Wang, J.*; Wang, H.*; Yan, X.*

Chem. Commun. 2021, 57, 11056-11059.

Synergistic Combination of ACQ and AIE Moieties to Enhance the Emission of Hexagonal Metallacycles
115.  

Anti-Sandwich Structured Photo-Electronic Wound Dressing for Highly Efficient Bacterial Infection Therapy

Zhou, K.; Chigan, D.; Xu, L.; Liu, C.; Ding, R.; Li, G.; Zhang, Z.; Pei, D.; Li, A.; Guo, B.; Yan, X.; He, G.*

Small 2021, 17, 2101858.

Anti-Sandwich Structured Photo-Electronic Wound Dressing for Highly Efficient Bacterial Infection Therapy
114.  

Synergistic Covalent-and-Supramolecular Polymers Connected by [2]Pseudorotaxane Moieties

(Chemical Communications Hot Articles, Invited paper for “Host-Guest Chemistry” special issue)

Wan, J.#; Zhang, Z.#*; Wang, Y.; Zhao, J.; Qi, Y.; Zhang, X.; Liu, K.; Yu, C.*; Yan, X.*

Chem. Commun. 2021, 57, 7374-7377.

Synergistic Covalent-and-Supramolecular Polymers Connected by [2]Pseudorotaxane Moieties
113.  

Drum-Like Metallacages with Size-Dependent Fluorescence: Exploring the Photophysics of Tetraphenylethylene Under Locked Conformations

Guo, Z.# (Undergraduate student); Li, G.#; Wang, H.; Zhao, J.; Liu, Y.; Tan, H.; Li, X.; Stang, P. J.*; Yan, X.* (#Equal Contribution)

J. Am. Chem. Soc. 2021, 143, 9215-9221.

Drum-Like Metallacages with Size-Dependent Fluorescence: Exploring the Photophysics of Tetraphenylethylene Under Locked Conformations
112.  

A Mortise-and-Tenon Joint Inspired Mechanically Interlocked Network

(Hot Paper)

Zhao, D.; Zhang, Z.; Zhao, J.; Liu, K.; Liu, Y.; Li, G.; Zhang, X.; Bai, R.; Yang, X.; Yan, X.*

Angew. Chem. Int. Ed. 2021, 60, 16224-16229.

A Mortise-and-Tenon Joint Inspired Mechanically Interlocked Network
111.  

Supramolecular Polymer-Assisted Manipulation of Triblock Copolymers: Understanding the Relationships between Microphase Structures and Mechanical Properties

(Invited paper for “Journal of Materials Chemistry A Emerging Investigators 2021” special issue)

Shentu, Z.#; Zhang, Z.#,*; Zhao, J.; Chen, C.; Wu, Q.; Wang, L.; Yan, X.* (#Equal Contribution)

J. Mater. Chem. A 2021, 9, 19619-19624.

Supramolecular Polymer-Assisted Manipulation of Triblock Copolymers: Understanding the Relationships between Microphase Structures and Mechanical Properties
110.  

Hierarchical Self-Assembly of Nanowires on the Surface by MetalloSupramolecular Truncated Cuboctahedra

Wang, H.#; Wang, K.#; Xu, Y.#; Wang, W.#; Chen, S.; Hart, M.; Wojtas, L.; Zhou, L.-P.; Gan, L.; Yan, X.; Li, Y.; Lee, J.; Ke, X.-S.; Wang, X.-Q.; Zhang, C.-W.; Zhou, S.; Zhai, T.; Yang, H.-B.; Wang, M.; He, J.; Su, Q.-F.; Xu, B.; Jiao, Y.; Stang, P. J.; Sessler, J. L.*; Li, X.* (#Equal Contribution)

J. Am. Chem. Soc. 2021, 143, 5826-5835.

Hierarchical Self-Assembly of Nanowires on the Surface by MetalloSupramolecular Truncated Cuboctahedra
109.  

Light-Emitting Self-Assembled Metallacages

(Invited Review)

Zhao, J.#; Zhou, Z.#; Stang, P. J.*; Yan, X.* (#Equal Contribution)

Natl. Sci. Rev. 2021, 8, nwab045.

Light-Emitting Self-Assembled Metallacages
108.  

Biomimetic Impact Protective Supramolecular Polymeric Materials Enabled by Quadruple H-Bonding

Liu, K.#; Cheng, L.#; Zhang, N.#; Pan, H.; Fan, X.; Li, G.; Zhang, Z.; Zhao, D.; Yang, X.; Wang, Y.; Bai, R.; Liu, Y.; Liu, Z.; Wang, S.; Gong, X.; Bao, Z.; Gu, G.*; Yu, W.*; Yan, X.* (#Equal Contribution)

J. Am. Chem. Soc. 2021, 143, 1162-1170.

Biomimetic Impact Protective Supramolecular Polymeric Materials Enabled by Quadruple H-Bonding
107.  

Strain-Insensitive Intrinsically Stretchable Transistors and Circuits

(ESI Highly Cited Paper)

Wang, W.#; Wang, S.#,*; Rastak, R.; Ochiai, Y.; Niu, S.; Jiang, Y.; Arunachala, P. K.; Zheng, Y.; Xu, J.; Matsuhisa, N.; Yan, X.; Kwon, S.-K.; Miyakawa, M.; Zhang, Z.; Ning, R.; Foudeh, A. M.; Yun, Y.; Linder, C.; Tok, J. B.-H.; Bao, Z.* (#Equal Contribution)

Nat. Electron. 2021, 4, 143-150.

Strain-Insensitive Intrinsically Stretchable Transistors and Circuits
106.  

Polymers in Lithium-Ion and Lithium Metal Batteries

Li, J.#; Cai, Y.#; Wu, H.#; Yu, Z.#; Yan, X.; Zhang, Q.; Gao, T. Z.; Jia, X.*; Bao, Z.* (#Equal Contribution)

Adv. Energy Mater. 2021, DOI: 10.1002/aenm.202003239.

Polymers in Lithium-Ion and Lithium Metal Batteries
105.  

Conformational Effect on Fluorescence Emission of Tetraphenylethylene-based Metallacycles

Guo, Z. (Undergraduate student); Zhao, J.; Liu, Y.; Li, G.*; Wang, H.; Hou, Y.; Zhang, M.; Li, X.; Yan, X.*

Chin. Chem. Lett. 2021, 32, 1691-1695.

Conformational Effect on Fluorescence Emission of Tetraphenylethylene-based Metallacycles
104.  

Muscle-Mimetic Synergistic Covalent and Supramolecular Polymers: Phototriggered Formation Leads to Mechanical Performance Boost

(ESI Highly Cited Paper, Free cover story)

Zhang, Z.#; Cheng, L.#; Zhao, J.; Zhang, H.; Zhao, X.; Liu, Y.; Bai, R.; Pan, H.; Yu, W.; Yan, X.* (#Equal Contribution)

J. Am. Chem. Soc. 2021, 143, 902-911.

Muscle-Mimetic Synergistic Covalent and Supramolecular Polymers: Phototriggered Formation Leads to Mechanical Performance Boost
103.  

Double-Layered Supramolecular Prisms Self-Assembled by Geometrically Non-equivalent Tetratopic Subunits

Wang, H.; Zhou, L.-P.; Zheng, Y.; Wang, K.; Song, B.; Yan, X.; Wojtas, L.; Wang, X.-Q.; Jiang, X.; Wang, M.; Sun, Q.-F.; Xu, B.; Yang, H.-B.; Sue, A. C.-H.; Chan, Y.-T.; Sessler J. L.; Jiao, Y.; Stang, P. J.; Li, X.*

Angew. Chem. Int. Ed. 2021, 60, 1298-1305.

Double-Layered Supramolecular Prisms Self-Assembled by Geometrically Non-equivalent Tetratopic Subunits
102.  

Construction of Supramolecular Polymers Based on Host-Guest Recognition

Ji, X.; Wang, F.; Yan, X.; Dong, S.; Huang, F. *

Chin. J. Chem. 2020, 38, 1473-1479.

Construction of Supramolecular Polymers Based on Host-Guest Recognition
101.  

Woven Polymer Networks via the Topological Transformation of a [2]Catenane

Li, G.; Wang, L.; Wu, L.; Guo, Z.; Zhao, J.; Liu, Y.; Bai, R.; Yan, X.*

J. Am. Chem. Soc. 2020, 142, 14343-14349.

Woven Polymer Networks via the Topological Transformation of a [2]Catenane
100.  

Fully Stretchable Active-Matrix Organic Light-Emitting Electrochemical Cell Array

Liu, J.; Wang, J.; Zhang, Z.; Molina-Lopez, F.; Wang, G.-J. N.; Schroeder, B. C.; Yan, X.; Zeng, Y.; Zhao, O.; Tran, H.; Lei, T.; Lu, Y.; Wang, Y.-X.; Tok, J. B.-H.; Dauskardt, R.; Chung, J. W.; Yun, Y.*; Bao, Z.*

Nat. Commun. 2020, 11, 3362.

Fully Stretchable Active-Matrix Organic Light-Emitting Electrochemical Cell Array
99.  

Engineering Supramolecular Polymer Conformation for Efficient Carbon Nanotube Sorting

Gao, T. Z.; Sun, Z.; Yan, X.; Wu, H.-C.; Yan, H.; Bao, Z.*

Small 2020, 16, 2000923.

Engineering Supramolecular Polymer Conformation for Efficient Carbon Nanotube Sorting
98.  

Synergistic Covalent and Supramolecular Polymers for Mechanically Robust but Dynamic Materials

(VIP paper)

Zhang, Z.; Cheng, L.; Zhao, J.; Wang, L.; Liu, K.; Yu, W.; Yan, X.*

Angew. Chem. Int. Ed. 2020, 59, 12139-12146.

Synergistic Covalent and Supramolecular Polymers for Mechanically Robust but Dynamic Materials
97.  

Rh(II)-based Metal-Organic Polyhedra

(Invited Highlight Review, Inside cover story)

Zhao, J.; Yan, X.*

Chem. Lett. 2020, 49, 659-665.


Rh(II)-based Metal-Organic Polyhedra
96.  

Metal-Organic Polyhedra Crosslinked Supramolecular Polymeric Elastomers (ElastoMOPs)

(Invited paper for “Chemical Communications Emerging Investigators 2020” special issue)

Zhao, J.; Cheng, L.; Liu, K.; Zhang, Z.; Yu, W.; Yan, X.*

Chem. Commun. 2020, 56, 8031-8034.

Metal-Organic Polyhedra Crosslinked Supramolecular Polymeric Elastomers (ElastoMOPs)
95.  

Trackable Supramolecular Fusion: Cage to Cage Transformation of Tetraphenylethylene-Based Metalloassemblies

(ESI Highly Cited Paper)

Li, G.#; Zhou, Z.#; Yuan, C.; Guo, Z.; Liu, Y.; Zhao, D.; Liu, K.; Zhao, J.; Tan, H.; Yan, X.* (#Equal Contribution)

Angew. Chem. Int. Ed. 2020, 59, 10013-10017.


Trackable Supramolecular Fusion: Cage to Cage Transformation of Tetraphenylethylene-Based Metalloassemblies
94.  

A Self-Cross-Linking Supramolecular Polymer Network Enabled by Crown-Ether-Based Molecular Recognition

(ESI Highly Cited Paper)

Wang, L.#; Cheng, L.#; Li, G.#; Liu, K.; Zhang, Z.; Li, P.; Dong, S.; Yu, W.*; Huang, F.*; Yan, X.* (#Equal Contribution)

J. Am. Chem. Soc. 2020, 142, 2051-2058.

A Self-Cross-Linking Supramolecular Polymer Network Enabled by Crown-Ether-Based Molecular Recognition
93.  

Engineering Orthogonality in the Construction of Alternating Rhomboidal Copolymer with High Fidelity via Integrative Self-Sorting

(Invited paper for “Polymer Chemistry Emerging Investigators 2020” special issue)

Zhang, Z.; Liu, Y.; Zhao, J.; Yan, X.*

Polym. Chem. 2020, 11, 367-374.

Engineering Orthogonality in the Construction of Alternating Rhomboidal Copolymer with High Fidelity via Integrative Self-Sorting
92.  

Decoupling of Mechanical Properties and Ionic Conductivity in Supramolecular Lithium Ion Conductors

(One of the Top 50 Nature Communications chemistry and materials science articles published in 2019; ESI Highly Cited Paper)

Mackanic, D. G.#; Yan, X.*,#; Zhang, Q.; Matsuhisa, N.; Yu, Z.; Jiang, Y.; Manika, T.; Lopez, J.; Yan, H.; Liu, K.; Chen, X.; Cui, Y.*; Bao, Z.* (#Equal Contribution)

Nat. Commun. 2019, 10, 5384.

Decoupling of Mechanical Properties and Ionic Conductivity in Supramolecular Lithium Ion Conductors
91.  

Membrane Intercalation-Enhanced Photodynamic Inactivation of Bacteria by a Metallacycle and TAT-Decorated Virus Coat Protein

Gao, S.#; Yan, X.*,#; Xie, G.; Zhu, M.; Ju, X.; Stang, P. J.*; Tian, Y.*; Niu, Z. (#Equal Contribution)

Proc. Natl. Acad. Sci. USA 2019, 116, 23437-23443.



Membrane Intercalation-Enhanced Photodynamic Inactivation of Bacteria by a Metallacycle and TAT-Decorated Virus Coat Protein
90.  

Skin-Inspired Electronics Enabled by Supramolecular Polymeric Materials

(Invited mini-review, cover story)

Liu, K.; Jiang, Y.; Bao, Z.*; Yan, X.* CCS Chem. 2019, 1, 431-447.


Skin-Inspired Electronics Enabled by Supramolecular Polymeric Materials
89.  

A Dynamic, Electrolyte-Blocking, and Single-Ion-Conductive Network for Stable Lithium-Metal Anodes

Yu, Z.; Mackanic, D. G.; Michaels, W.; Lee, M.; Pei, A.; Feng, D.; Zhang, Q.; Tsao, Y.; Amanchukwu, C. V.; Yan, X.; Wang, H.; Chen, S.; Liu, K.; Kang, J.; Qin, J.; Cui, Y.*; Bao, Z.*

Joule 2019, 3, 2761-2776.

A Dynamic, Electrolyte-Blocking, and Single-Ion-Conductive Network for Stable Lithium-Metal Anodes
88.  

A Wireless Body Area Sensor Network Based on Stretchable Passive Tags

(ESI Highly Cited Paper)

Niu, S.; Matsuhisa, N.; Beker, L.; Li, J.; Wang, S.; Wang, J.; Jiang, Y.; Yan, X.; Burnett, W.; Poon, A. S. Y.; Tok, J. B.-H.; Chen, X.*; Bao, Z.*

Nature Electronics 2019, 2, 361-368.

A Wireless Body Area Sensor Network Based on Stretchable Passive Tags
87.  

Endo- and Exo-Functionalized Tetraphenylethylene M12L24 Nanospheres: Fluorescence Emission inside a Confined Space

Yan, X.*,#; Wei, P.#; Liu, Y.; Wang, M.; Chen, C.; Zhao, J.; Li, G.; Saha, M. L.; Zhou, Z.; An, Z.*; Li, X.; Stang, P. J.*

(#Equal Contribution)

J. Am. Chem. Soc. 2019, 141, 9673-9679.


Endo- and Exo-Functionalized Tetraphenylethylene M12L24 Nanospheres: Fluorescence Emission inside a Confined Space
86.  

Reversible Ion-Conducting Switch in a Novel Single-Ion Supramolecular Hydrogel Enabled by Photoresponsive Host–Guest Molecular Recognition

Wang, H.; Zhu, C. N.; Zeng, H.; Ji, X.; Xie, T.; Yan, X.*; Wu, Z. L.*; Huang, F.*

Adv. Mater. 2019, 31, 1807328.

Reversible Ion-Conducting Switch in a Novel Single-Ion Supramolecular Hydrogel Enabled by Photoresponsive Host–Guest Molecular Recognition
85.  

Aggregation-Induced Emission on Supramolecular Coordination Complexes Platforms (Book chapter)

Yan, X.*; Zhang, M.*; Huang, F.*

Principles and Applications of Aggregation-Induced Emission (Editors: Profs. Ben Zhong Tang and Youhong Tang), 2019, Chapter 7, 163-194.


Aggregation-Induced Emission on Supramolecular Coordination Complexes Platforms (Book chapter)
84.  

Highly Tunable and Facile Synthesis of Uniform Carbon Flower Particles.

Chen, S.; Koshy, D. M.; Tsao, Y.; Pfattner, R.; Yan, X.; Feng, D.; Bao, Z.*

J. Am. Chem. Soc. 2018, 140, 10297-10304.

Highly Tunable and Facile Synthesis of Uniform Carbon Flower Particles.
83.  

Fluorescent Metallacage-core Supramolecular Polymer Gel Formed by Orthogonal Metal Coordination and Host-Guest Interactions.

Lu, C.; Zhang, M.*; Tang, D.; Yan, X.; Zhang, Z.; Zhou, Z.; Song, B.; Wang, H.; Li, X.; Yin, S.*; Sepehrpour, H.; Stang, P. J.*

J. Am. Chem. Soc. 2018, 140, 7674–7680.


Fluorescent Metallacage-core Supramolecular Polymer Gel Formed by Orthogonal Metal Coordination and Host-Guest Interactions.
82.  

Designing Boron Nitride Islands in Carbon Materials for Efficient Electrochemical Synthesis of Hydrogen Peroxide.

Chen, S.; Chen, Z.; Siahrostami, S.; Higgins, D.; Nordlund, D.; Sokaras, D.; Kim, T. R.; Liu, Y.; Yan, X.; Nilsson, E.; Sinclair, R.; Norskov, J. K.*; Jaramillo, T. F.*; Bao, Z.*

J. Am. Chem. Soc. 2018, 140, 7851–7859.


Designing Boron Nitride Islands in Carbon Materials for Efficient Electrochemical Synthesis of Hydrogen Peroxide.
81.  

Quadruple H-bonding Crosslinked Supramolecular Polymeric Materials as Substrate for Stretchable, Anti-tearing, and Self-healable Thin Film Electrode.(#Equal Contribution)

(ESI Highly Cited Paper)

Yan, X. #; Liu, Z.#; Zhang, Q.#; Lopez, J.; Wang, H.; Wu, H.-C.; Niu, S.; Yan, H.; Wang, S.; Lei, T.; Li, J.; Qi, D.; Huang, P.; Huang, J.; Zhang, Y.; Wang, Y.; Li, G.; Tok, J. B.-H.; Chen, X.*; Bao, Z.*

J. Am. Chem. Soc. 2018, 140, 5280-5289.


Quadruple H-bonding Crosslinked Supramolecular Polymeric Materials as Substrate for Stretchable, Anti-tearing, and Self-healable Thin Film Electrode.(#Equal Contribution)
80.  

Stretchable temperature-sensing circuits with strain suppression based on carbon nanotube transistors.

(ESI Highly Cited Paper)

Zhu, C.; Chortos, A.; Wang, Y.; Pfattner, R.; Lei, T.; Hinckley, A. C.; Pochorovski, I.; Yan, X.; To, J. W.-F.; Oh, J. Y.; Tok, J. B.-H.; Bao, Z.*; Murmann, B.*

Nature Electronics 2018, 1, 183-190.


Stretchable temperature-sensing circuits with strain suppression based on carbon nanotube transistors.
79.  

Ionically Conductive Self-Healing Binder for Low Cost Si Microparticles Anodes in Li-Ion Batteries.

Munaoka, T.; Yan, X.; Lopez, J.; To, J. W. F.; Park, J.; Tok, J. B.-H.; Cui, Y.*; Bao, Z.*

Adv. Energy Mater. 2018, 8, 1703138.


Ionically Conductive Self-Healing Binder for Low Cost Si Microparticles Anodes in Li-Ion Batteries.
78.  

Alanine-Based Chiral Metallogels via Supramolecular Coordination Complex Platforms: Metallogelation Induced Chirality Transfer.

Sun, Y.; Li, S.; Zhou, Z.; Saha, M. L.; Datta, S.; Zhang, M.; Yan, X.; Tian, D.; Wang, H.; Wang, L.; Li, X.-P.; Liu, M.*; Li, H.*; Stang, P. J.*

J. Am. Chem. Soc. 2018, 140, 3257-3263.


Alanine-Based Chiral Metallogels via Supramolecular Coordination Complex Platforms: Metallogelation Induced Chirality Transfer.
76.  

Investigating Limiting Factors in Stretchable All-Carbon Transistors for Reliable Stretchable Electronics.

Chortos, A.; Zhu, C.; Oh, J. Y..; Yan, X.; Pochorovski, I.; To, T. W. F.; Liu, N.; Kraft, U.; Murmann, B.; Bao, Z.*

ACS Nano 2017, 11, 7925-7937.


Investigating Limiting Factors in Stretchable All-Carbon Transistors for Reliable Stretchable Electronics.
75.  

Universal Selective Dispersion of Semiconducting Carbon Nanotubes from Commercial Sources Using a Supramolecular Polymer

Chortos, A.; Pochorovski, I.; Lin, P.; Pitner, G.; Yan, X.; Gao, T. Z.; To, T. W. F.; Lei, T.; Will, J. W.; Wong, H.-S. P.; Bao, Z.*

ACS Nano 2017, 11, 5660-5669.


Universal Selective Dispersion of Semiconducting Carbon Nanotubes from Commercial Sources Using a Supramolecular Polymer
74.  

Near-Infrared Emissive Discrete Platinum(II) Metallacycles: Synthesis and Application in Ammonia Detection.

Li, Z.; Yan, X.; Huang, F.*; Sepehrpour, H.; Stang, P. J.*

Org. Lett. 2017, 19, 5728-5731.


Near-Infrared Emissive Discrete Platinum(II) Metallacycles: Synthesis and Application in Ammonia Detection.
73.  

Pt(II)-Based Convex Trigonal Prismatic Cages via Coordination-Driven Self-Assembly and C60 Encapsulation.

Zhang, M.*; Xu, H.; Wang, M.; Saha, M. L.; Zhou, Z.; Yan, X.; Wang, H.; Li, X.; Huang, F.; She, N.* Stang, P. J.*

Inorg. Chem. 2017, 56, 12498-12504.


Pt(II)-Based Convex Trigonal Prismatic Cages via Coordination-Driven Self-Assembly and C60 Encapsulation.
72.  

“Multicomponent Platinum(II) Cages with Tunable Emission and Amino Acid Sensing.

(ESI Highly Cited Paper)

Zhang, M.*; Saha, M. L.; Wang, M.; Zhou, Z.; Song, B.; Lu, C.; Yan, X.; Li, X.; Huang, F.; Yin, S.*; Stang, P. J.*

J. Am. Chem. Soc. 2017, 139, 5067-5074.


“Multicomponent Platinum(II) Cages with Tunable Emission and Amino Acid Sensing.
71.  

Fluorescent Metallacycle-Cored Polymers via Covalent Linkage and Their Use as Contrast Agents for Cell Imaging.

Yu, G.; Cook, T. R.; Li, Y.; Yan, X.; Wu, D.; Shao, L.; Shen, J.; Tang, G.; Huang, F.*; Chen, X.*; Stang, P. J.*

Proc. Natl. Acad. Sci. U.S.A. 2016, 113, 13720-13725.


Fluorescent Metallacycle-Cored Polymers via Covalent Linkage and Their Use as Contrast Agents for Cell Imaging.
70.  

“Photophysical Properties of Pt(II)-Compounds and Derived Self-Assembled Metallacycles and Metallacages.

(ESI Highly Cited Paper)

Saha, M. L.*; Yan, X.*; Stang, P. J.*

Acc. Chem. Res. 2016, 49, 2527-2539.


“Photophysical Properties of Pt(II)-Compounds and Derived Self-Assembled Metallacycles and Metallacages.
69.  

Immobilizing Tetraphenylethylene into Fused Metallacyclic Polygons: Shape Effects on Fluorescence Emission.

Zhou, Z.; Yan, X.*; Saha, M. L.*; Zhang, M.; Wang, M.; Li, X.; Stang, P. J.*

J. Am. Chem. Soc. 2016, 138, 13131-13134.


Immobilizing Tetraphenylethylene into Fused Metallacyclic Polygons: Shape Effects on Fluorescence Emission.
68.  

Fluorescent Metallacycle-Cored Polymers via Covalent Linkage and Their Use as Contrast Agents for Cell Imaging.

Zhang, M.*; Li, S.; Yan, X.; Zhou, Z.; Saha, M. L.; Wang, Y.-C.*; Stang, P. J.*

Proc. Natl. Acad. Sci. U.S.A. 2016, 113, 11100-11105.


Fluorescent Metallacycle-Cored Polymers via Covalent Linkage and Their Use as Contrast Agents for Cell Imaging.
67.  

Supramolecular Polymer Materials Based on Crown Ether and Pillararene Host?Guest Recognition Motifs.

Ji, X.; Xia, D.; Yan, X.; Wang, H.; Huang, F.*

Acta Polymerica Sinica 2016, 9-18.


Supramolecular Polymer Materials Based on Crown Ether and Pillararene Host?Guest Recognition Motifs.
66.  

Hierarchical Self-Assembly of Responsive Organoplatinum(II) Metallacycle-TMV Complexes with Turn-On Fluorescence. (#Equal Contribution)

Tian, Y.#; Yan, X.#; Saha, M. L.; Niu, Z.*; Stang, P. J.*

J. Am. Chem. Soc. 2016, 138, 12033-12036.


Hierarchical Self-Assembly of Responsive Organoplatinum(II) Metallacycle-TMV Complexes with Turn-On Fluorescence. (#Equal Contribution)
65.  

Supramolecular Copolymer Constructed by Hierarchical Self-Assembly of Triply Orthogonal Host-Guest, H-Bonding and Coordination Interactions.

Wei, P.; Yan, X.*; Cook, T. R.; Ji, X.; Stang, P. J.*; Huang, F.*

ACS Macro. Lett. 2016, 5, 671-675.


Supramolecular Copolymer Constructed by Hierarchical Self-Assembly of Triply Orthogonal Host-Guest, H-Bonding and Coordination Interactions.
64.  

Light-Emitting Superstructures with Anion Effect: Coordination-Driven Self-Assembly of Pure Tetraphenylethylene Metallacycles and Metallacages.

(ESI Highly Cited Paper)

Yan, X.*; Wang, M.; Cook, T. R.; Zhang, M.; Saha, M. L.; Zhou, Z.; Li, X.; Huang, F.*

J. Am. Chem. Soc. 2016, 138, 4580-4588.


Light-Emitting Superstructures with Anion Effect: Coordination-Driven Self-Assembly of Pure Tetraphenylethylene Metallacycles and Metallacages.
63.  
Engineering Functionalization in a Supramolecular Polymer: Hierarchical Self-Organization of Triply Orthogonal Non-Covalent Interactions on a Supramolecular Coordination Complex Platform.
62.  

A Suite of Tetraphenylethylene-Based Discrete Organoplatinum(II) Metallacycles: Controllable Structure and Stoichiometry, Aggregation-Induced Emission, and Nitroaromatic Sensing.

Yan, X.*; Wang, H.; Hauke, C. E.; Cook, T. R.; Wang, M.; Saha, M. L.; Zhou, Z.; Zhang, M.; Li, X.; Huang, F.*; Stang, P. J.*

J. Am. Chem. Soc. 2015, 137, 15276-15286.


A Suite of Tetraphenylethylene-Based Discrete Organoplatinum(II) Metallacycles: Controllable Structure and Stoichiometry, Aggregation-Induced Emission, and Nitroaromatic Sensing.
61.  

Coordination-Driven Self-Assembly of Fullerene-Functionalized Pt(II) Metallacycles.

Neti, V. S. P. K.; Saha, M. L.; Yan, X.; Zhou, Z.; Stang, P. J.*

Organometallics 2015, 34, 4813-4815.


Coordination-Driven Self-Assembly of Fullerene-Functionalized Pt(II) Metallacycles.
58.  

Highly Emissive Platinum(II) Metallacages.

(ESI Highly Cited Paper; The top ten most cited papers of 2015-2017 in Nature Chemistry. For highlights of this paper, please see: “Light-Emitting Matallacycles Put Themselves Together”, C&EN, 2015, 93, 9; “Hybrid cage complexes fluoresce in solution and as solids”, ACS Noteworthy Chemistry)

Yan, X.; Cook, T. R.; Wang, P.; Huang, F.*; Stang, P. J.*

Nature Chem. 2015, 7, 342-348.


Highly Emissive Platinum(II) Metallacages.
57.  

Development of Pseudorotaxanes and Rotaxanes: From Synthesis to Stimuli-Responsive Motions to Applications.

Xue, M.; Yang, Y.; Chi, X.; Yan, X.; Huang, F.*

Chem. Rev. 2015, 115, 7398-7501.


Development of Pseudorotaxanes and Rotaxanes: From Synthesis to Stimuli-Responsive Motions to Applications.
56.  

A Discrete Amphiphilic Organoplatinum(II) Metallacycle with Tunable Lower Critical Solution Temperature Behavior.

Wei, P.; Cook, T. R.; Yan, X.; Huang, F.*; Stang, P. J.*

J. Am. Chem. Soc. 2014, 136, 15497-15500.


A Discrete Amphiphilic Organoplatinum(II) Metallacycle with Tunable Lower Critical Solution Temperature Behavior.
55.  

Supramolecular Polymers Constructed by Orthogonal Self-Assembly Based on Host?Guest and Metal-Ligand Interactions.

(ESI Highly Cited Paper)

Wei, P.; Yan, X.*; Huang, F.*

Chem. Soc. Rev. 2015, 44, 815-832.


Supramolecular Polymers Constructed by Orthogonal Self-Assembly Based on Host?Guest and Metal-Ligand Interactions.
54.  
Reversible Formation of A Poly[3]rotaxane Based on Photo Dimerization of An Anthracene-Capped [3]Rotaxane.
52.  

Photoinduced Transformations of Stiff-Stilbene-Based Discrete Metallacycles to Metallosupramolecular Polymers.

Yan, X.; Xu, J.-F.; Cook, T. R.; Huang, F.*; Yang, Q.-Z.*; Tung, C.-H.; Stang, P. J.*

Proc. Natl. Acad. Sci. U.S.A. 2014, 111, 8717-8722.


Photoinduced Transformations of Stiff-Stilbene-Based Discrete Metallacycles to Metallosupramolecular Polymers.
51.  

Self-Assembly of Triangular and Hexagonal Molecular Necklaces.

Li, S.*; Huang, J.; Zhou, F.; Cook, T. R.; Yan, X.; Ye, Y.; Zhu, B.; Zheng, B.; Stang, P. J.*

J. Am. Chem. Soc. 2014, 136, 5908-5911.


Self-Assembly of Triangular and Hexagonal Molecular Necklaces.
48.  

Stimuli-Responsive Host-Guest Systems Based on the Recognition of Cryptands by Organic Guests.

Zhang, M.; Yan, X.; Huang, F.*; Niu, Z.; Gibson, H. W.*

Acc. Chem. Res. 2014, 47, 1995-2005.


Stimuli-Responsive Host-Guest Systems Based on the Recognition of Cryptands by Organic Guests.
47.  

Responsive Supramolecular Polymer Formed by Orthogonal Metal-Coordination and Cryptand-Based Host-Guest Interaction.

(RSC Editors’ Choice by Prof. Jonathan Steed)

Wei, P.; Xia, B.; Zhang, Y.; Yu, Y.; Yan, X.*

Chem. Commun. 2014, 50, 3973-3975.


Responsive Supramolecular Polymer Formed by Orthogonal Metal-Coordination and Cryptand-Based Host-Guest Interaction.
46.  

Responsive Supramolecular Polymer Metallogel Constructed by Orthogonal Coordination-Driven Self-Assembly and Host-Guest Interactions.

(ESI Highly Cited Paper)

Yan, X.; Cook, T. R.; Pollock, J. B.; Wei, P.; Zhang, Y.; Yu, Y.; Huang, F.*; Stang, P. J.*

J. Am. Chem. Soc. 2014, 136, 4460-4463.


Responsive Supramolecular Polymer Metallogel Constructed by Orthogonal Coordination-Driven Self-Assembly and Host-Guest Interactions.
44.  

Benzo-21-Crown-7-Based [1]Rotaxanes: Syntheses, X-ray Crystal Structures, and Dynamic Characteristics.

Zhou, Q.*; Wei, P.; Zhang, Y.; Yu, Y.; Yan, X.*

Org. Lett. 2013, 15, 5350-5353.


Benzo-21-Crown-7-Based [1]Rotaxanes: Syntheses, X-ray Crystal Structures, and Dynamic Characteristics.
43.  

Dendronized Organoplatinum(II) Metallacyclic Polymers Constructed by Hierarchical Coordination-Driven Self-Assembly and Hydrogen Bonding Interfaces.

Yan, X.; Jiang, B.; Cook, T. R.; Zhang, Y.; Li, J.; Yu, Y.; Huang, F.*; Yang, H.-B.*; Stang, P. J.*

J. Am. Chem. Soc. 2013, 135, 16813-16816.

Dendronized Organoplatinum(II) Metallacyclic Polymers Constructed by Hierarchical Coordination-Driven Self-Assembly and Hydrogen Bonding Interfaces.
41.  

Crown Ether-Based Cryptand/Tropylium Cation Inclusion Complexes.

Wu, X.; Li, J.; Yan, X.*; Zhou, Q.*

Tetrahedron 2013, 69, 9573-9579.


Crown Ether-Based Cryptand/Tropylium Cation Inclusion Complexes.
40.  

A Pillar[6]arene with Monoethylene Oxide Substituents: Synthesis and Complexation with Diquat.

Chi, X.; Xue, M.; Ma, Y.; Yan, X.; Huang, F.

Chem. Commun. 2013, 49, 8175-8177.


A Pillar[6]arene with Monoethylene Oxide Substituents: Synthesis and Complexation with Diquat.
39.  

Hierarchical Self-Assembly: Well-Defined Supramolecular Nanostructures and Metallohydrogels via Amphiphilic Discrete Organoplatinum(II) Metallacycles.

(ESI Highly Cited Paper; Front cover. For a highlight of this paper, please see: “METAL-CONTAINING CORES YIELD NANOSTRUCTURED MATERIALS”, JACS Spotlight, 2013, 135, 14895.)

Yan, X.; Li, S.; Cook, T. R.; Ji, X.; Yao, Y.; Pollock, J. B.; Yu, G.; Li, J.; Huang, F.*; Stang, P. J.*

J. Am. Chem. Soc. 2013, 135, 14036-14039.


Hierarchical Self-Assembly: Well-Defined Supramolecular Nanostructures and Metallohydrogels via Amphiphilic Discrete Organoplatinum(II) Metallacycles.
38.  

Two Protocols for the Preparation of [2]Rotaxanes Based on the Dibenzo-24-Crown-8-Based Cryptand/Paraquat Recognition Motif.

Wu, X.; Xue, M.; Li, J.; Yan, X.*; Zhou, Q.*

Tetrahedron Lett. 2013, 54, 6640-6643.


Two Protocols for the Preparation of [2]Rotaxanes Based on the Dibenzo-24-Crown-8-Based Cryptand/Paraquat Recognition Motif.
37.  
Taco Complex-Templated Dynamic Clipping to Cryptand-Based [2]Rotaxane- and [2]Catenane-Type Mechanically Interlocked Structures.
36.  

Supramolecular Polymers with Tunable Topologies via Hierarchical Coordination-Driven Self-Assembly and Hydrogen Bonding Interfaces.

(ESI Highly Cited Paper)

Yan, X.; Li, S.; Pollock, J. B.; Cook, T. R.; Chen, J.; Zhang, Y.; Ji, X.; Yu, Y.; Huang, F.*; Stang, P. J.*

Proc. Natl. Acad. Sci. U.S.A., 2013, 110, 15585-15590.


Supramolecular Polymers with Tunable Topologies via Hierarchical Coordination-Driven Self-Assembly and Hydrogen Bonding Interfaces.
35.  

Characterization of Supramolecular Gels.

Yu, G.; Yan, X.; Han, C.; Huang, F.*

Chem. Soc. Rev. 2013, 42, 6697-6722.


Characterization of Supramolecular Gels.
34.  

Benzo-21-Crown-7/Secondary Ammonium Salt [2]Rotaxanes with Fluoro/Chlorocarbon Blocking Groups.

Zheng, B.; Zhang, M.; Dong, S.; Yan, X.; Huang, F.*

Org. Lett. 2013, 15, 3538-3541.


Benzo-21-Crown-7/Secondary Ammonium Salt [2]Rotaxanes with Fluoro/Chlorocarbon Blocking Groups.
33.  

Threaded Structures Based on the Benzo-21-Crown-7/Secondary Ammonium Salt Recognition Motif Using Esters as End Groups.

Zheng, B.; Zhang, M.; Yan, X.; Huang, F.*

Org. Biomol. Chem., 2013, 11, 3880-3885.


Threaded Structures Based on the Benzo-21-Crown-7/Secondary Ammonium Salt Recognition Motif Using Esters as End Groups.
32.  

A Water-Soluble Supramolecular Polymer Constructed by Cyclobis(paraquat-p-phenylene)-Based Molecular Recognition.

Chi, X.; Xu, D.; Yan, X.; Chen, J.; Zhang, M.; Hu, B.; Yu, Y.; Huang, F.*

Polym. Chem. 2013, 4, 2767-2772.


A Water-Soluble Supramolecular Polymer Constructed by Cyclobis(paraquat-p-phenylene)-Based Molecular Recognition.
31.  

A Self-Healing Supramolecular Polymer Gel with Stimuli-Responsiveness Constructed by Crown Ether-Based Molecular Recognition.

Yan, X.; Xu, D.; Chen, J.; Zhang, M.; Hu, B.; Yu, Y.; Huang, F.*

Polym. Chem. 2013, 4, 3312-3322.


A Self-Healing Supramolecular Polymer Gel with Stimuli-Responsiveness Constructed by Crown Ether-Based Molecular Recognition.
30.  

A Dynamic [1]Catenane with pH-Responsiveness Formed via Threading-Followed-by-Complexation.

Yan, X.; Wei, P.; Li, Z.; Zheng, B.; Dong, S.; Huang, F.*

Chem. Commun. 2013, 49, 2512-2514.


A Dynamic [1]Catenane with pH-Responsiveness Formed via Threading-Followed-by-Complexation.
29.  

Integrated Motion of Molecular Machines in Supramolecular Polymeric Scaffolds.

Yan, X.; Zheng, B.; Huang, F.*

Polym. Chem. 2013, 4, 2395-2399.


Integrated Motion of Molecular Machines in Supramolecular Polymeric Scaffolds.
27.  

A Supramolecular Cross-Linked Conjugated Polymer Network for Multiple Fluorescent Sensing

Ji, X.; Yao, Y.; Li, J.; Yan, X.; Huang, F.*

J. Am. Chem. Soc. 2013, 135, 74-77.


A Supramolecular Cross-Linked Conjugated Polymer Network for Multiple Fluorescent Sensing
24.  

Preparation of A Diblock Supramolecular Copolymer via Self-Sorting Organization.

Dong, S.; Zheng, B.; Zhang, M.; Yan, X.; Ding, X.; Yu Y.; Huang, F.*

Macromolecules 2012, 45, 9070-9075.


Preparation of A Diblock Supramolecular Copolymer via Self-Sorting Organization.
23.  

Complexation of Paraquat and Diazapyrenium Derivatives with Dipyrido[30]crown-10.

Li, S.;* Weng, G.-H.; Zheng, B.; Yan, X.; Wu, J.; Lin, W.; Chen, H.-X.; Zhang, X.-C.

Eur. J. Org. Chem. 2012, 6570-6575.


Complexation of Paraquat and Diazapyrenium Derivatives with Dipyrido[30]crown-10.
22.  

Novel [2]Rotaxanes Based on the Recognition of Pillar[5]arenes to An Alkane Functionalized with Triazole Moieties.

Wei, P.; Yan, X.; Li, J.; Ma, Y.; Yao, Y.; Huang, F.*

Tetrahedron, 2012, 68, 9179-9185.


Novel [2]Rotaxanes Based on the Recognition of Pillar[5]arenes to An Alkane Functionalized with Triazole Moieties.
21.  

Supramolecular Micelles Constructed by Crown Ether-Based Molecular Recognition.

Ji, X.; Li, J.; Chen, J.; Chi, X.; Zhu, K.; Zhang, M.; Yan, X.; Huang, F.*

Macromolecules 2012, 45, 6457-6463.


Supramolecular Micelles Constructed by Crown Ether-Based Molecular Recognition.
20.  

A Chemical-Responsive Bis(m-Phenylene)-32-Crown-10/2,7-Diazapyrenium Derivative [2]Pseudorotaxane.

Yan, X.; Wu, X.; Wei, P.; Zhang, M.; Huang, F.*

Chem. Commun. 2012, 48, 8201-8203.


A Chemical-Responsive Bis(m-Phenylene)-32-Crown-10/2,7-Diazapyrenium Derivative [2]Pseudorotaxane.
19.  

A Crown Ether Appended Super Gelator with Multiple Stimulus Responsiveness.

Dong, S.; Zheng, B.; Xu, D.; Yan, X.; Zhang, M.; Huang, F.*

Adv. Mater. 2012, 24, 3191-3195.


A Crown Ether Appended Super Gelator with Multiple Stimulus Responsiveness.
18.  

Dual-Responsive Crown Ether-Based Supramolecular Chain Extended Polymers.

Chen, J.; Yan, X.; Chi, X.; Wu, X.; Zhang, M.; Han, C.; Hu, B.; Yu, Y.; Huang, F.*

Polym. Chem. 2012, 3, 3175-3179.


Dual-Responsive Crown Ether-Based Supramolecular Chain Extended Polymers.
17.  

Pillar[6]arene-Based Photo-Responsive Host–Guest Complexation.

Yu, G.; Han, C.; Zhang, Z.; Chen, J.; Yan, X.; Zheng, B.; Liu, S.;* Huang, F.*

J. Am. Chem. Soc. 2012, 134, 8711-8717.


Pillar[6]arene-Based Photo-Responsive Host–Guest Complexation.
16.  

[n]Pseudorotaxanes (n = 2,3) from Self-Assembly of Two Cryptands and A 1,2-Bis(4-pyridinium)ethane Derivative.

Yan, X.; Chi, X.; Wei, P.; Zhang, M.; Huang, F.*

Eur. J. Org. Chem. 2012, 6351-6356.


[n]Pseudorotaxanes (n = 2,3) from Self-Assembly of Two Cryptands and A 1,2-Bis(4-pyridinium)ethane Derivative.
15.  

Stimuli-Responsive Supramolecular Polymeric Materials.

(ESI Highly Cited Paper; Front Cover, Invited Review Article, “Supramolecular Polymers” Special Issue)

Yan, X.; Wang, F.; Zheng, B.; Huang, F.*

Chem. Soc. Rev. 2012, 41, 6042-6065.


Stimuli-Responsive Supramolecular Polymeric Materials.
14.  

Pseudorotaxanes from Self-Assembly of Two Crown Ether-based Cryptands and A 1,2-Bis(pyridinium) Ethane Derivative.

Yan, X.; Wei, P.; Xia, B.; Huang, F.;* Zhou Q.*

Chem. Commun. 2012, 48, 4968-4970.


Pseudorotaxanes from Self-Assembly of Two Crown Ether-based Cryptands and A 1,2-Bis(pyridinium) Ethane Derivative.
13.  

The per-Hydroxylated Pillar[6]arene: Synthesis, X-ray Crystal Structure and Host-Guest Complexation.

Ma, Y.; Chi, X.; Yan, X.; Liu, J.; Yao, Y.; Chen, W.; Hou, J.-L.;* Huang, F.*

Org. Lett. 2012, 14, 1532-1535.


The per-Hydroxylated Pillar[6]arene: Synthesis, X-ray Crystal Structure and Host-Guest Complexation.
12.  

pH-Responsive Supramolecular Polymerization in Aqueous Media Driven by Electrostatic Attraction-Enhanced Crown Ether-Based Molecular Recognition.

Ji, X.; Zhu, K.; Yan, X.; Ma, Y.; Li, J.; Hu, B.; Yu, Y.; Huang, F.*

Macromol. Rapid Commun. 2012, 33, 1197-1202.


pH-Responsive Supramolecular Polymerization in Aqueous Media Driven by Electrostatic Attraction-Enhanced Crown Ether-Based Molecular Recognition.
11.  

A Supramolecular Polymer Blend Containing Two Different Supramolecular Polymers via Self-Sorting Organization of Two Heteroditopic Monomers.

Dong, S.; Yan, X.; Zheng, B.; Chen, J.; Ding, X.; Yu, Y.; Xu, D.; Zhang, M.; Huang, F.

Chem. Eur. J. 2012, 18, 4195-4199.


A Supramolecular Polymer Blend Containing Two Different Supramolecular Polymers via Self-Sorting Organization of Two Heteroditopic Monomers.
10.  

A Multiresponsive, Shape-Persistent, and Elastic Supramolecular Polymer Network Gel Constructed by Orthogonal Self-Assembly.

(ESI Highly Cited Paper; The top ten most cited papers of 2012-2013 in Advanced Materials, Adv. Mater. 2015, 27, 12-14.)

Yan, X.; Xu, D.; Chi, X.; Chen, J.; Dong, S.; Ding, X.; Yu, Y.; Huang, F.*

Adv. Mater. 2012, 24, 362-369.


A Multiresponsive, Shape-Persistent, and Elastic Supramolecular Polymer Network Gel Constructed by Orthogonal Self-Assembly.
9.  

Self-Healing Supramolecular Gels Formed by Crown Ether Based Host-Guest Interactions.

Zhang, M.; Xu, D.; Yan, X.; Chen, J.; Dong, S.; Zheng, B.; Huang, F.*

Angew. Chem., Int. Ed. 2012, 51, 7011-7015.


Self-Healing Supramolecular Gels Formed by Crown Ether Based Host-Guest Interactions.
8.  

Adjustable Supramolecular Polymer Microstructures Fabricated by the Breath-Figure Method.

Chen, J.; Yan, X.; Zhao, Q.; Li, L.;* Huang, F.*

Polym. Chem. 2012, 3, 458-462.


Adjustable Supramolecular Polymer Microstructures Fabricated by the Breath-Figure Method.
7.  

A Dual-Responsive Supramolecular Polymer Gel Formed by Crown Ether-Based Molecular Recognition.

Dong, S.; Luo, Y.; Yan, X.; Zheng, B.; Ding, X.; Yu, Y.; Ma, Z.; Zhao, Q.; Huang, F.*

Angew. Chem., Int. Ed. 2011, 50, 1905-1909.


A Dual-Responsive Supramolecular Polymer Gel Formed by Crown Ether-Based Molecular Recognition.
6.  

pH-Responsive assembly and Disassembly of a Supramolecular Cryptand-based Pseudorotaxane Driven by 7i-n Stacking Interaction.

Yan, X.; Zhang, M.; Wei, P.; Zheng, B.; Chi, X.; Ji, X.; Huang, F.*

Chem. Commun. 2011, 47, 9840-9842.


pH-Responsive assembly and Disassembly of a Supramolecular Cryptand-based Pseudorotaxane Driven by 7i-n Stacking Interaction.
5.  

[2]Pseudorotaxanes Based on the Recognition of Cryptands to Vinylogous Viologens.

Yan, X.; Wei, P.; Zhang, M.; Chi, X.; Liu, J.; Huang, F.*

Org. Lett. 2011, 13, 6370-6373.

[2]Pseudorotaxanes Based on the Recognition of Cryptands to Vinylogous Viologens.
4.  

Supramolecular Polymer Nanofibers via Electrospinning of a Heteroditopic Monomer.

Yan, X.; Zhou, M.; Chen, J.; Chi, X.; Dong, S.; Zhang, M.; Ding, X.; Yu, Y.; Shao, S.; Huang, F.*

Chem. Commun. 2011, 47, 7086-7088.


Supramolecular Polymer Nanofibers via Electrospinning of a Heteroditopic Monomer.
3.  

Improved Pseudorotaxane and Catenane Formation from A Derivative of Bis(m-Phenylene)-32-Crown-10.

Zhang, M.; Luo, Y.; Zheng, B.; Yan, X.; Fronczek, F. R.; Huang, F.*

Eur. J. Org. Chem. 2010, 6798-6803

Improved Pseudorotaxane and Catenane Formation from A Derivative of Bis(m-Phenylene)-32-Crown-10.
2.  

Photoresponsive Host-Guest Systems Based on a New Azobenzene-Containing Crytpand.

Liu, M.; Yan, X.; Hu, M.; Chen, X.; Zhang, M.; Zheng, B.; Hu, X.; Shao, S.; Huang, F.*

Org. Lett. 2010, 12, 2558-2661.

Photoresponsive Host-Guest Systems Based on a New Azobenzene-Containing Crytpand.
1.  

Anion Assisted Complexation of Paraquat by Bis(m-Phenylene)-32-Crown-10-Based Cryptands.

Zhu, K.; Wu, L.; Yan, X.; Zheng, B.; Zhang, M.; Huang, F.*

Chem. Eur. J. 2010, 16, 6088-6098.


Anion Assisted Complexation of Paraquat by Bis(m-Phenylene)-32-Crown-10-Based Cryptands.