Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include Perovskite Materials and Applications, Quantum Dots Synthesis And Properties, Chalcogenide Semiconductor Thin Films, and Luminescence Properties of Advanced Materials.
Anion-cation synergistic passivated antimony sulfide for efficient inorganic indoor photovoltaics
Field-effect passivation for minimized voltage loss in highly efficient antimony selenosulfide solar cells
Ultra‐Stable Dual‐Band Electrochromic Windows Enabled by Shear‐Phase Niobium Oxide
High-performance bilayer IGO/IGZO thin-film transistors based on defect self-compensation
Machine-learning guided engineering of Mo<sup>4+</sup> activated halide near-infrared phosphors for AI-augmented medical imaging.
Interfacial-Bulk Synergistic Passivation for High-Performance Self-Powered CsPbBr<sub>3</sub> Quantum Dot Photodetectors.
Localized Excitonic Magnetic Polarons and Their Role in the Luminescence of Rare-Earth-Sulfur Codoped Divalent Metal Halides.
High-Performance Solution-Processed Quantum Dot Infrared Photodetectors via Interface Engineering with MXenes.
Wide-Gamut and High-Saturation Electrochromic Displays Enabled by Optical-Thickness Engineered Nanocavities.
Surface Ferroelectricity in Lead-Free Nonferroelectric Chiral Perovskites Beyond Neumann's Principle.
Ultra-High-Efficiency and Reversible Hydrochromism in a CsCaCl<sub>3</sub>:Cd<sup>2+</sup>/Mn<sup>2+</sup> Perovskite for Advanced Information Encryption.
Field-effect passivation for minimized voltage loss in highly efficient antimony selenosulfide solar cells.
Enhanced stability and ultraviolet photodetection performance in CsPbBr<sub>3</sub> nanoplatelets <i>via</i> FA doping.
Facile Synthesis of Large-Scale Two-Dimensional Perovskite Microplates for High-Performance UV Photodetectors.
Solution-processed high-
<i>κ</i>
SrTiO
<sub>3</sub>
with high breakdown field for gate dielectrics
Antimony Oxide Enabled Ion‐Dominant Deposition for High‐Efficiency Sb
<sub>2</sub>
S
<sub>3</sub>
Solar Cells
Pixel‐Level X‐Ray to NIR Image Fusion Based on Lead‐Free Halide Perovskite for Biological Imaging
Green-emitting large organic molecules (C19H42N)2MnCl4 metal halides for multifunctional applications
High-performance CsPbBr
<sub>3</sub>
nanobelt photodetectors
Deuteration‐functionalized self‐assembled monolayers for
<scp>UV</scp>
‐durable perovskite solar cells
Surface Ferroelectricity in Lead‐Free Nonferroelectric Chiral Perovskites Beyond Neumann's Principle
Water-based inks for inkjet-printed Cu(In, Ga)(S, Se)
<sub>2</sub>
thin film solar cells with a power conversion efficiency of 15%
Supramolecular‐Assembled Chiral Cu(I) Halide Scintillators With Near‐Unity Cyan Photoluminescence for High‐Resolution X‐Ray Imaging
Two Organic Ligands for Tuning the Luminescence of Mn-Based Metal Halides
Electron-phonon coupling probed by ultrafast coherent phonon spectroscopy in bulk van der Waals CrSBr
Synergistic Bulk Doping and Interfacial Passivation for Highly Efficient and Stable SnO2-Based Quantum Dot Light-Emitting Diodes
Ultrabroad NIR emission from paired [SbCl
<sub>4</sub>
]
<sup>−</sup>
clusters in hybrid antimony chlorides
Engineering Fe3+ Multi-site Occupation and Lattice Regulation in a Double Perovskite Ba2LuSbO6 phosphor for broadband near-infrared luminescence
Pb2+-Doping-Activated Localized Luminescence of Organic-Inorganic Cobalt (II) Bromides
PO<sub>4</sub><sup>3−</sup> Tetrahedron Assisted Chelate Engineering for 10.67%‐Efficient Antimony Selenosulfide Solar Cells