Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research focused on Cocrystal and Organic electronics, with related work in Organic semiconductor, Nanotechnology, Ambipolar diffusion. Notable publications include 'Recent advances in n-type and ambipolar organic semiconductors and their multi-functional applications', 'Creating Organic Functional Materials beyond Chemical Bond Synthesis by Organic Cocrystal Engineering', and 'Solution‐Processed Centimeter‐Scale Highly Aligned Organic Crystalline Arrays for High‐Performance Organic Field‐Effect Transistors'.
Organic light-emitting transistors with high efficiency and narrow emission originating from intrinsic multiple-order microcavities
Asymmetrically Coordinated CoN<sub>5</sub> Sites with Enhanced Oxidase-like Activity for Dual-Mode Colorimetric Sensing of Nitrite
Large-Area Conductive MOF Ultrathin Film Controllably Integrating Dinuclear-Metal Sites and Photosensitizers to Boost Photocatalytic CO<sub>2</sub> Reduction with H<sub>2</sub>O as an Electron Donor
Highly‐Polarized Solar‐Blind Ultraviolet Organic Photodetectors
Unraveling the crucial role of trace oxygen in organic semiconductors
Novel solution-processed 2D organic semiconductor crystals for high-performance OFETs
<scp>NIR‐II</scp> Organic Photothermal Cocrystals with Strong Charge Transfer Interaction for Flexible Wearable Heaters
Navigating the transitional window for organic semiconductor single crystals towards practical integration: from materials, crystallization, and technologies to real-world applications
Luminescent Organic Single Crystals for Flexible Optical Fiber Scintillators and X-ray Imaging
Recent advances in n-type and ambipolar organic semiconductors and their multi-functional applications
Recent progress of crystalline porous organic frameworks as ratiometric fluorescence biosensing platforms
Novel Metal–Organic Framework Cocrystal Strategy for Significantly Enhancing Photocatalytic Performance
Nano Organic Co‐Crystal Scintillator for X‐ray Imaging
High-mobility organic semiconducting crystal for direct X-ray detection
Negative Phototransistors with Ultrahigh Sensitivity and Weak‐Light Detection Based on 1D/2D Molecular Crystal p–n Heterojunctions and their Application in Light Encoders
Challenging Bendable Organic Single Crystal and Transistor Arrays with High Mobility and Durability toward Flexible Electronics
Cocrystal engineering: towards high-performance near-infrared organic phototransistors based on donor-acceptor charge transfer cocrystals
Dual discrimination of fast neutrons from strong γ noise using organic single-crystal scintillator
Highly Fluorescent Semiconducting Two-Dimensional Conjugated Polymer Films Achieved by Side-Chain Engineering Showing Large Exciton Diffusion Length
Creating Organic Functional Materials beyond Chemical Bond Synthesis by Organic Cocrystal Engineering
Vertical‐organic‐nanocrystal‐arrays for crossbar memristors with tuning switching dynamics toward neuromorphic computing
Organic Semiconductor Crystal Engineering for High‐Resolution Layer‐Controlled 2D Crystal Arrays
Solution-processed crystalline organic integrated circuits
Cocrystal engineering: Tuning the charge transfer excitons for highly sensitive luminescent switching materials under multiple stimuli
Solution‐Processed Centimeter‐Scale Highly Aligned Organic Crystalline Arrays for High‐Performance Organic Field‐Effect Transistors
Cocrystal Engineering: Toward Solution‐Processed Near‐Infrared 2D Organic Cocrystals for Broadband Photodetection
Recent Advances in Growth of Large‐Sized 2D Single Crystals on Cu Substrates
Modified water-nitrogen productivity function based on response of water sensitive index to nitrogen for hybrid maize under drip fertigation
Layer‐Defining Strategy to Grow Two‐Dimensional Molecular Crystals on a Liquid Surface down to the Monolayer Limit
Parameterization of the AquaCrop model for full and deficit irrigated maize for seed production in arid Northwest China