Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Luminescence and Fluorescent Materials, Organic Light-Emitting Diodes Research, Crystallization and Solubility Studies, and X-ray Diffraction in Crystallography.
Full-color processible afterglow organic small molecular glass
Ultrabright 1650 nm-Emitting Biodegradable Organic Luminophores for NIR-IIbc Fluorescence Imaging
Mechanoluminescence from Amorphous Organic Luminogens
Nitric Oxide‐Activated Bioorthogonal Codelivery Nanoassembly for In Situ Synthesis of Photothermal Agent for Precise and Safe Anticancer Treatment
Carbazole Analog Doping‐Induced Bright Red and Near‐Infrared Organic Room‐Temperature Phosphorescence with Long Lifetime
Dynamic organic mechanoluminescence (ML): The roles of Mechano-induced conformational isomer and energy transfer from ML to photoluminescence (PL)
Multicolor Ultralong Organic Phosphorescence through Alkyl Engineering for 4D Coding Applications
Achieving Dual‐Emissive and Time‐Dependent Evolutive Organic Afterglow by Bridging Molecules with Weak Intermolecular Hydrogen Bonding
Two-photon-excited ultralong organic room temperature phosphorescence by dual-channel triplet harvesting
Photo-induced phosphorescence and mechanoluminescence switching in a simple purely organic molecule
Transient and Persistent Room‐Temperature Mechanoluminescence from a White‐Light‐Emitting AIEgen with Tricolor Emission Switching Triggered by Light
The Influence of Molecular Packing on the Emissive Behavior of Pyrene Derivatives: Mechanoluminescence and Mechanochromism
Weak interactions but potent effect: tunable mechanoluminescence by adjusting intermolecular C–H⋯π interactions
Alkyl Chain Introduction: In Situ Solar‐Renewable Colorful Organic Mechanoluminescence Materials
Transient and Persistent Room‐Temperature Mechanoluminescence from a White‐Light‐Emitting AIEgen with Tricolor Emission Switching Triggered by Light
An efficient yellow thermally activated delayed fluorescence emitter with universal applications in both doped and non-doped organic light-emitting diodes
Recent advances in organic thermally activated delayed fluorescence materials
Elucidating the Excited State of Mechanoluminescence in Organic Luminogens with Room‐Temperature Phosphorescence
Triphenylamine derivatives: different molecular packing and the corresponding mechanoluminescent or mechanochromism property
Hydrogen‐Bonding‐Assisted Intermolecular Charge Transfer: A New Strategy to Design Single‐Component White‐Light‐Emitting Materials
Elucidating the Excited State of Mechanoluminescence in Organic Luminogens with Room‐Temperature Phosphorescence
Mechanoluminescence from pure hydrocarbon AIEgen
AIEgen with Fluorescence–Phosphorescence Dual Mechanoluminescence at Room Temperature
Achieving remarkable mechanochromism and white-light emission with thermally activated delayed fluorescence through the molecular heredity principle
AIEgen with Fluorescence–Phosphorescence Dual Mechanoluminescence at Room Temperature
White‐Light Emission Strategy of a Single Organic Compound with Aggregation‐Induced Emission and Delayed Fluorescence Properties
White‐Light Emission Strategy of a Single Organic Compound with Aggregation‐Induced Emission and Delayed Fluorescence Properties