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Wei Liu-Fu

Showing results (1-10 of 11) with videos related to

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Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|March 2, 2026
Dynamic Covalent Networks of Molecular Clusters for Hard and Impact-Resistant Glass with Feasible ProcessabilityHaiyan Xiao, Jia-Fu Yin, Linjie Lan, et al.
Angewandte Chemie (International Ed. in English)|July 8, 2025
Stretch-Induced Structural Ordering and Orientation for Tensile Yield Behavior and Anisotropic Optical Property of Molecular Granular MaterialsWei Liu-Fu, Shengqiu Liu, Jiadong Chen, et al.
The Journal of Physical Chemistry Letters|November 10, 2025
Anomalous Polymer Chain Dynamics Acceleration and Viscosity Reduction from the Complexation of Amphipathic Metal-Organic PolyhedraLinjie Lan, Haiyan Xiao, Wei Liu-Fu, et al.
Macromolecular Rapid Communications|May 19, 2026
The Polymer Brush of Sub-Nanometer Molecular Clusters: Surface Click-Chemistry for Precise Modulation of Visco-ElasticityWei Liu-Fu, Jia-Fu Yin, Haiyan Xiao, et al.
Chemistry, an Asian Journal|April 28, 2023
Functional Molecular Granular Materials: Advances and PerspectivesWei Liu-Fu, Xin Zhou, Jiadong Chen, et al.
ACS Macro Letters|April 24, 2026
Ionic Assembly of Molecular Clusters toward Hierarchically Ordered Granular Materials with Tunable ViscoelasticityTianchen Wang, Wei Liu-Fu, Jia-Fu Yin, et al.
Nano Letters|August 18, 2025
Spatiotemporal Characteristics of the Hierarchical Relaxation Dynamics for Topological Soft NanoparticlesJia-Fu Yin, Wei Liu-Fu, Haiyan Xiao, et al.
The Journal of Physical Chemistry Letters|April 12, 2024
Exploration of Molecular Nanoparticles as Soft Structural Materials and Their Structure-Property RelationshipJia-Fu Yin, Wei Liu-Fu, Junsheng Yang, et al.
Nano Letters|March 8, 2024
Unique Viscoelasticity and Hierarchical Relaxation Dynamics of Molecular Granular MaterialsWei Liu-Fu, Haiyan Xiao, Jiadong Chen, et al.
Chemical Science|November 2, 2022
Dimerization of sub-nanoscale molecular clusters affords broadly tuneable viscoelasticity above the glass transition temperatureXin Zhou, Junsheng Yang, Jia-Fu Yin, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|March 2, 2026
Dynamic Covalent Networks of Molecular Clusters for Hard and Impact-Resistant Glass with Feasible ProcessabilityHaiyan Xiao, Jia-Fu Yin, Linjie Lan, et al.
Angewandte Chemie (International Ed. in English)|July 8, 2025
Stretch-Induced Structural Ordering and Orientation for Tensile Yield Behavior and Anisotropic Optical Property of Molecular Granular MaterialsWei Liu-Fu, Shengqiu Liu, Jiadong Chen, et al.
The Journal of Physical Chemistry Letters|November 10, 2025
Anomalous Polymer Chain Dynamics Acceleration and Viscosity Reduction from the Complexation of Amphipathic Metal-Organic PolyhedraLinjie Lan, Haiyan Xiao, Wei Liu-Fu, et al.
Macromolecular Rapid Communications|May 19, 2026
The Polymer Brush of Sub-Nanometer Molecular Clusters: Surface Click-Chemistry for Precise Modulation of Visco-ElasticityWei Liu-Fu, Jia-Fu Yin, Haiyan Xiao, et al.
Chemistry, an Asian Journal|April 28, 2023
Functional Molecular Granular Materials: Advances and PerspectivesWei Liu-Fu, Xin Zhou, Jiadong Chen, et al.
ACS Macro Letters|April 24, 2026
Ionic Assembly of Molecular Clusters toward Hierarchically Ordered Granular Materials with Tunable ViscoelasticityTianchen Wang, Wei Liu-Fu, Jia-Fu Yin, et al.
Nano Letters|August 18, 2025
Spatiotemporal Characteristics of the Hierarchical Relaxation Dynamics for Topological Soft NanoparticlesJia-Fu Yin, Wei Liu-Fu, Haiyan Xiao, et al.
The Journal of Physical Chemistry Letters|April 12, 2024
Exploration of Molecular Nanoparticles as Soft Structural Materials and Their Structure-Property RelationshipJia-Fu Yin, Wei Liu-Fu, Junsheng Yang, et al.
Nano Letters|March 8, 2024
Unique Viscoelasticity and Hierarchical Relaxation Dynamics of Molecular Granular MaterialsWei Liu-Fu, Haiyan Xiao, Jiadong Chen, et al.
Chemical Science|November 2, 2022
Dimerization of sub-nanoscale molecular clusters affords broadly tuneable viscoelasticity above the glass transition temperatureXin Zhou, Junsheng Yang, Jia-Fu Yin, et al.
Pageof 2