Area of research
Atomic and Molecular Physics, and Optics · Polymers and Plastics
Research interest
Research interests include Polymer, Materials science, Covalent bond, Elastomer, Chemistry, and Fracture (geology).
The Loop-Opening Model for the Intrinsic Fracture Energy of Elastomers
Tetrafunctional cyclobutanes tune toughness via network strand continuity
Self-Amplified HF Release and Polymer Deconstruction Cascades Triggered by Mechanical Force
Fracture of polymer-like networks with hybrid bond strengths
A Loop-Opening Model for the Intrinsic Fracture Energy of Polymer Networks
Facile mechanochemical cycloreversion of polymer cross-linkers enhances tear resistance
An elastomer with ultrahigh strain-induced crystallization
Nonlocal Intrinsic Fracture Energy of Polymerlike Networks
Reactivity-Guided Depercolation Processes Determine Fracture Behavior in End-Linked Polymer Networks
Toughening hydrogels through force-triggered chemical reactions that lengthen polymer strands
Molecular Characterization of Polymer Networks
Mechanism Dictates Mechanics: A Molecular Substituent Effect in the Macroscopic Fracture of a Covalent Polymer Network
Single-Event Spectroscopy and Unravelling Kinetics of Covalent Domains Based on Cyclobutane Mechanophores
Toughening Hydrogels Through Force-triggered Chemical Reactions that Lengthen Polymer Strands
Toughening Hydrogels Through Force-triggered Chemical Reactions that Lengthen Polymer Strands
Photoswitchable Sol–Gel Transitions and Catalysis Mediated by Polymer Networks with Coumarin‐Decorated Cu<sub>24</sub>L<sub>24</sub> Metal–Organic Cages as Junctions