Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, Phosphor, Luminescence, Photoluminescence, Chemistry, and Perovskite (structure).
Cu nanosheets with abundant exposed Cuδ+ sites for highly efficient electrosynthesis of C2H4 from CO2 via enhanced *H/*CO adsorption
Highly Selective Electroreduction of CO<sub>2</sub> to CH<sub>4</sub> on Cu–Pd Alloy Catalyst: the Role of Palladium‐Adsorbed Hydrogen Species and Blocking Effect
Near-unity room-temperature phosphorescence quantum yield induced by halogen–halogen interaction in chiral hybrid copper( <scp>i</scp> ) iodide clusters
Local symmetry-breaking induces robust circularly polarized luminescence in achiral Dion-Jacobson tin-based perovskites
Circularly Polarized Luminescence in Chiral Antimony(III) Chloride [Sb<sub>2</sub>Cl<sub>10</sub>]<sup>4–</sup> Dimers Induced by Asymmetric Hydrogen Bonding
Single-Site Palladium “Microreactor” for Carbon Dioxide Coupling/Cyclization Reactions
Interface-oriented bridges toward efficient carbon-based perovskite solar cells
Circularly Polarized Luminescence in Achiral Tin-Based Perovskites via Structural Isomer-Driven Coordination Interaction
Integrated “all-in-one” strategy toward boosting photoluminescence performance in Cr3+- activated ganet phosphors
Air-Stable Copper(I) Single-Atom Site Catalysts for Highly Selective Borylative Allyl–Allyl Cross-Coupling
Structural rigidity regulation via chemical unit co-substitution strategy toward improved near-infrared emitter performance
Circularly Polarized Luminescence Induced by Hydrogen‐Bonding Networks in a One‐Dimensional Hybrid Manganese(II) Chloride
Intense NIR-II luminescence through stabilization of tetrahedral (Mn5+O4) lumophore in apatites with high external quantum efficiency
High‐Performance Tunable Near‐Infrared Emitters of Cr <sup>3+</sup> ‐Activated Garnet Phosphor Enabled by Chemical Unit Co‐Substitution
A thermally stable narrow-band green phosphor Na2MgAl10O17: Eu2+, Mn2+ for NUV LED application
Visible TADF and NIR Quenching Emission of Chromium Activated Zirconium‐Halide Perovskite Toward Ultra‐High‐Sensitive Ratiometric Fluorescent Thermometer
Dual‐Mode Thermal Responses in Red and Near‐Infrared Emission Channels via Manipulating Cross Relaxations
Ligand‐Induced In Situ Epitaxial Growth of PbI<sub>2</sub> Nanosheets/MAPbI<sub>3</sub> Heterojunction Realizes High‐Performance HTM‐Free Carbon‐Based MAPbI<sub>3</sub> Solar Cells
Bright yellow pigment and broadband NIR-I phosphor based on octahedral coordinated mix-valence Cr in Ca2LiScB4O10
Tailoring lead-absorbing MOFs-based internal encapsulation toward sustainable carbon-based perovskite solar cells
Circularly Polarized Luminescence Induced by Hydrogen‐Bonding Networks in a One‐Dimensional Hybrid Manganese(II) Chloride
Ni<sup>2+</sup> in Distorted Octahedral Geometry toward High‐Efficiency NIR‐II/III emitter
<i>In situ</i> generated dimethylamine constructs a robust hydrogen-bonded organic framework for selective fluorescence detection
Na2CaP2O7:Cr3+ phosphor toward broadband emission
Ultra-Broadband Near-Infrared Phosphors Realized by the Heterovalent Substitution Strategy
Tetracoordinate Fe<sup>3+</sup> Activated Li<sub>2</sub>ZnAO<sub>4</sub> (A = Si, Ge) Near-Infrared Luminescent Phosphors
Synergistic effect of photoelectrochemical aptasensor based on staggered gap ZnO/BiFeO3 heterojunction coupled with cDNA-CdS sensitizer enabling ultrasensitive assay of kanamycin
Energy transfer realizes efficient NIR emitting Ca2ScTaO6:Cr3+, Yb3+ perovskite-structured phosphors
Eu‐Based Porphyrin MOF Enables High‐Performance Carbon‐Based Perovskite Solar Cells
Sharp-Line Near-Infrared Emission from Tetrahedron-Occupied Ni<sup>2+</sup> in Ca<sub>2</sub>GeO<sub>4</sub>