Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
Research focused on Organic solar cell and Conjugated system, with related work in Polymer, Transmittance, Ferroelectricity. Notable publications include 'Alcohol-Soluble n-Type Conjugated Polyelectrolyte as Electron Transport Layer for Polymer Solar Cells', 'Regulation of Polymer Configurations Enables Green Solvent‐Processed Large‐Area Binary All‐Polymer Solar Cells With Breakthrough Performance and High Efficiency Stretchability...', and 'A molecular weight-regulated sequential deposition strategy enabling semitransparent organic solar cells with the light utilization efficiency of over 5%'.
Asymmetric Dimerized Acceptor for Organic Solar Cells
Co‐Solvent Strategy Enables High‐Performance Printing Organic Thermoelectric via Synergistic Modulation of Crystallinity and Film Homogeneity
Residue‐Free Liquid‐Crystal Molecular Additive Enables the Significant Improvement of Power Factor for Simple Quinoid Thermoelectric Polymer
Highly Planar Tetramer Acceptor Constructed by Vinyl Linkage Enables Organic Solar Cells with Outstanding Efficiency
Programmable, Recyclable, and Self-Healing Multifunctional Liquid Crystal Elastomers Enabled by Dynamic Spiral Diacetal Structure
Synergistic Regulation of Crystallization Kinetics of Donor/Acceptor by New Volatile Additives for High Performance Organic Solar Cells
Three‐in‐One Strategy Enables Single‐Component Organic Solar Cells with Record Efficiency and High Stability
Non‐Fused Star‐Shape Giant Trimer Electron Acceptors for Organic Solar Cells with Efficiency over 19 %
Collaborative regulation strategy of donor and acceptor analogues realizes multifunctional semitransparent organic solar cells with excellent comprehensive performance
Recent progress of hybrid cathode interface layer for organic solar cells
Programmable, Self‐Healable, and Photochromic Liquid Crystal Elastomers Based on Dynamic Hindered Urea Bonds for Biomimetic Flowers
Linkage Regulation of Back‐To‐Back Connected Dimers as Guest Acceptors Enables Organic Solar Cells with Excellent Efficiency, Stability and Flexibility
Intramolecular Lock Conjugated Polymer Electrolytes as the Cathode Interfacial Layer for Nonfullerene Organic Solar Cells
Enhanced Fatigue Resistance of Liquid Crystal Elastomers Enabled by Dynamic Sacrificial Bonds
High‐Performance Terpolymers with Well‐Defined Structures Facilitate PCE Over 19% for Polymer Solar Cells
Synergistic strategy of rigid-bridge and flexible-bridge achieving high-performance and mechanical robustness all-Polymer solar cells
Non‐Fused Star‐Shape Giant Trimer Electron Acceptors for Organic Solar Cells with Efficiency over 19 %
Dimerized small molecular acceptors: Regulation of dimer conformation realizes binary organic solar cells with highly comprehensive performance
Regulating the Sequence Structure of Conjugated Block Copolymers Enables Large‐Area Single‐Component Organic Solar Cells with High Efficiency and Stability
Doping of ZnO Electron Transport Layer with Organic Dye Molecules to Enhance Efficiency and Photo‐Stability of the Non‐Fullerene Organic Solar Cells
Asymmetric Alloy Acceptor Strategy Guided by Similarity Principle Enables Highly Efficient and Stable Organic Solar Cells
Multi-functionally ferroelectric polymer promotes highly-efficient large-area organic solar cells with excellent comprehensive performance
Liquid-crystal elastomers based on covalent adaptable networks: From molecular design to applications
Facilely full-end-capping engineering promotes high-performance organic solar cells with simultaneously improved efficiency and stability
Revealing the Enhanced Thermoelectric Properties of Controllably Doped Donor‐Acceptor Copolymer: The Impact of Regioregularity
Regulating the Sequence Structure of Conjugated Block Copolymers Enables Large‐Area Single‐Component Organic Solar Cells with High Efficiency and Stability
Conformationally locked polythiophene processed by room-temperature blade coating enables a breakthrough of the power factor
Regulation of Polymer Configurations Enables Green Solvent‐Processed Large‐Area Binary All‐Polymer Solar Cells With Breakthrough Performance and High Efficiency Stretchability Factor
A molecular weight-regulated sequential deposition strategy enabling semitransparent organic solar cells with the light utilization efficiency of over 5%
Ferroelectric Polymer Drives Performance Enhancement of Non‐fullerene Organic Solar Cells