Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Perovskite Materials and Applications, Luminescence Properties of Advanced Materials, Luminescence and Fluorescent Materials, and Crystallization and Solubility Studies.
Organic–Inorganic Hybrid Rare Earth Halide Glasses for Tunable Multicolor X‐ray Scintillation
Branched Alkyl Chains Tunable Organic‐Inorganic Hybrid Manganese Halides for Anti‐counterfeiting, White Light‐emitting Diode and X‐ray Imaging Applications
A universal strategy toward two-component organic-inorganic metal halide luminescent glasses and glass-crystal composites
Tailoring the Emission Properties of Cs<sub>2</sub>NaLuCl<sub>6</sub> for Anti‐Counterfeiting, X‐Ray Scintillation, and Night Vision Applications
An anti-thermal-quenching organic–inorganic hybrid manganese-based single-crystal scintillator for high-temperature X-ray imaging
Organic-inorganic metal halide glass optical fibers for ultralow-loss and bendable photonic applications
Guanidinium‐Based Manganese(II) Bromide with High Glass‐Forming Ability for Thermoplastic Curved X‐ray Imaging
Bisphosphonium cation based metal halide glass scintillators with tunable melting points
Phosphonium Iodide Featuring Blue Thermally Activated Delayed Fluorescence for Highly Efficient X‐Ray Scintillator
Manganese‐Halide Single‐Crystal Scintillator Toward High‐Performance X‐Ray Detection and Imaging: Influences of Halogen and Thickness
Organic–Inorganic Hybrid Mn‐Based Transparent Glass for Curved X‐Ray Scintillation Imaging
All Inorganic Sb<sup>3+</sup>–Ln<sup>3+</sup>‐Codoped Cs<sub>2</sub>NaYCl<sub>6</sub> for Highly Efficient Single‐Source White‐Light Emission and Ratiometric Optical Thermometer Applications
Zero‐Dimensional Zn‐Based Halides with Ultra‐Long Room‐Temperature Phosphorescence for Time‐Resolved Anti‐Counterfeiting
A Melt‐Quenched Luminescent Glass of an Organic–Inorganic Manganese Halide as a Large‐Area Scintillator for Radiation Detection
Large-Area Laminar TEA<sub>2</sub>MnI<sub>4</sub> Single-Crystal Scintillator for X-ray Imaging with Impressive High Resolution
Bright Cyan‐Emissive Copper(I)‐Halide Single Crystals for Multi‐Functional Applications
Reversible human-temperature-responsive luminescence switching in a Mn(<scp>ii</scp>)-based metal halide
A Melt‐Quenched Luminescent Glass of an Organic–Inorganic Manganese Halide as a Large‐Area Scintillator for Radiation Detection
Indium-antimony-halide single crystals for high-efficiency white-light emission and anti-counterfeiting
Activation of Self‐Trapped Emission in Stable Bismuth‐Halide Perovskite by Suppressing Strong Exciton–Phonon Coupling
Te4+-doped Cs2InCl5·H2O single crystals for remote optical thermometry
Water-Molecule-Induced Emission Transformation of Zero-Dimension Antimony-Based Metal Halide
All-Inorganic Lead-Free Heterometallic Cs4MnBi2Cl12 Perovskite Single Crystal with Highly Efficient Orange Emission
High Photoluminescence Quantum Yield (>95%) of MAPbBr<sub>3</sub> Nanocrystals via Reprecipitation from Methylamine-MAPbBr<sub>3</sub> Liquid
A Highly Red‐Emissive Lead‐Free Indium‐Based Perovskite Single Crystal for Sensitive Water Detection
Intrinsic Self‐Trapped Emission in 0D Lead‐Free (C<sub>4</sub>H<sub>14</sub>N<sub>2</sub>)<sub>2</sub>In<sub>2</sub>Br<sub>10</sub> Single Crystal
Intrinsic Self‐Trapped Emission in 0D Lead‐Free (C<sub>4</sub>H<sub>14</sub>N<sub>2</sub>)<sub>2</sub>In<sub>2</sub>Br<sub>10</sub> Single Crystal
Two New Pyripyropenes from the Marine Fungus <i>Fusarium lateritium</i> 2016F18‐1