Area of research
Electrical and Electronic Engineering · Polymers and Plastics
Research interest
Research interests include Organic Electronics and Photovoltaics, Conducting polymers and applications, Perovskite Materials and Applications, and Advanced Combustion Engine Technologies.
Organic solar cells: beyond 20%
Organic solar cells with 21% efficiency enabled by a hybrid interfacial layer with dual-component synergy
Boosting Binary Organic Solar Cells Over 20% Efficiency via Synchronous Modulation of Charge Transport and Phase Morphology
Achieving 20.8% organic solar cells via additive-assisted layer-by-layer fabrication with bulk p-i-n structure and improved optical management
Single-junction organic solar cells with over 19% efficiency enabled by a refined double-fibril network morphology
The Molecular Ordering and Double‐Channel Carrier Generation of Nonfullerene Photovoltaics within Multi‐Length‐Scale Morphology
Ultrafast Random‐Pyramid Texturing for Efficient Monocrystalline Silicon Solar Cells
Non-fullerene acceptors with branched side chains and improved molecular packing to exceed 18% efficiency in organic solar cells
Single-layered organic photovoltaics with double cascading charge transport pathways: 18% efficiencies
Organic nanocrystals induced surface passivation towards high-efficiency and stable perovskite solar cells
Efficient Organic Solar Cell with 16.88% Efficiency Enabled by Refined Acceptor Crystallization and Morphology with Improved Charge Transfer and Transport Properties
Optimized active layer morphology toward efficient and polymer batch insensitive organic solar cells
Ferrocene as a highly volatile solid additive in non-fullerene organic solar cells with enhanced photovoltaic performance
Ternary Organic Solar Cells with Efficiency >16.5% Based on Two Compatible Nonfullerene Acceptors
Stability of Amorphous Pharmaceutical Solids: Crystal Growth Mechanisms and Effect of Polymer Additives