Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
Research interests include Materials science, Organic solar cell, Acceptor, Energy conversion efficiency, Ternary operation, and Photovoltaic system.
Organic solar cells with 21% efficiency enabled by a hybrid interfacial layer with dual-component synergy
Achieving 20% Efficiency in Organic Solar Cells Through Conformationally Locked Solid Additives
Metabolism archetype cancer cells induce protumor TREM2+ macrophages via oxLDL-mediated metabolic interplay in hepatocellular carcinoma
CAD manipulates tumor intrinsic DHO/UBE4B/NF-κB pathway and fuels macrophage cross-talk, promoting HCC metastasis
Non‐halogenated Solvent‐Processed Organic Solar Cells with Approaching 20 % Efficiency and Improved Photostability
Suppressing Trap‐Assisted Nonradiative Recombination via Interface Modification for Achieving Efficient Organic Solar Cells
High-Efficiency and Low-Energy-Loss Organic Solar Cells Enabled by Tuning Conformations of Dimeric Electron Acceptors
Over 18% Efficiency Ternary Organic Solar Cells with 300 nm Thick Active Layer Enabled by an Oligomeric Acceptor
Impact of donor halogenation on reorganization energies and voltage losses in bulk-heterojunction solar cells
Chlorine-Substituted Double-Cable Conjugated Polymers with Near-Infrared Absorption for Low Energy Loss Single-Component Organic Solar Cells
Status report on emerging photovoltaics
Double-Cable Conjugated Polymers Based on Simple Non-Fused Electron Acceptors for Single-Component Organic Solar Cells
Binary Organic Solar Cells Breaking 19% via Manipulating the Vertical Component Distribution
Recent progress in organic solar cells (Part II device engineering)
Vertically optimized phase separation with improved exciton diffusion enables efficient organic solar cells with thick active layers
Achieving Record-Efficiency Organic Solar Cells upon Tuning the Conformation of Solid Additives
Over 19.2% Efficiency of Organic Solar Cells Enabled by Precisely Tuning the Charge Transfer State Via Donor Alloy Strategy
Ternary strategy enabling high-efficiency rigid and flexible organic solar cells with reduced non-radiative voltage loss
Improved Molecular Ordering in a Ternary Blend Enables All‐Polymer Solar Cells over 18% Efficiency
Quasi‐Homojunction Organic Nonfullerene Photovoltaics Featuring Fundamentals Distinct from Bulk Heterojunctions
Double‐Cable Conjugated Polymers with Pendent Near‐Infrared Electron Acceptors for Single‐Component Organic Solar Cells
Single-layered organic photovoltaics with double cascading charge transport pathways: 18% efficiencies
Recent progress in organic solar cells (Part I material science)
Efficient Organic Solar Cell with 16.88% Efficiency Enabled by Refined Acceptor Crystallization and Morphology with Improved Charge Transfer and Transport Properties
Non-fullerene organic solar cells based on a BODIPY-polymer as electron donor with high photocurrent
Automobile active tilt control based on active suspension