Area of research
Electronic, Optical and Magnetic Materials · Materials Chemistry
Research interest
Research interests include Materials science, Birefringence, Chemistry, Nonlinear optical, Second-harmonic generation, and Ultraviolet.
Global screening of copper cluster catalysts for hydrogen evolution reaction: A DFT study
Enhancing CO <sub>2</sub> Methanation by Constructing Tetra-Atomic Catalysts on Graphdiyne
Achieving pH-universal oxygen electrolysis via synergistic density and coordination tuning over biomass-derived Fe single-atom catalyst
Design and mechanism study of fast response MoS2/SnS2 heterojunction ammonia sensor for gas detection in chicken coops
Single-Atom-Embedded Nitrogen-Doped Graphene as Efficient Electrocatalysts for the CO<sub>2</sub> Reduction Reaction
Lewis Acidity‐Governed Ion Exchange and Record Birefringence in A′[Ag <sub>3</sub> (PO <sub>3</sub> F) <sub>2</sub> ]
Thermoluminescence properties of novel KSrPO4: Tm phosphor
Deep-ultraviolet sulfamate halides with halogen-centered secondary building units for enhanced optical anisotropy
The birefringence in orthorhombic and triclinic lead-iodates and the functional basic units' contribution: A first-principles investigation
Single-metal atoms supported on HfBO MBenes for efficient overall water splitting
The spin–orbit coupling induced stereochemical activity and nonlinear optical response in Pb2BO3X (X = Cl, Br, I)
Na<sub>2</sub>MP<sub>3</sub>O<sub>9</sub> (M = K, Rb): Two Potential Zero-Order Waveplate Materials with DUV Cutoff Edges
Three-In-One: A Guanidinium-Containing Niobium Oxyfluoride with a Perovskite-like Structure Revealing Multifunctional Optical Properties
Design and Mechanism Study of Fast Response Mos2/Sns2 Heterojunction Ammonia Sensor for Gas Detection in Chicken Coops
Enhancement of Gas Sensing Detection Performance Using Heterojunctions Formed by Dandelion Fiber-Derived Carbon Microtubes
Two mixed P–O anionic phosphates with a distinctive structural transformation and deep ultraviolet cutoff edge
Na<sub>3</sub>RE(PO<sub>4</sub>)<sub>2</sub> with a Glaserite-Like Structure: The Effect of Cation on Structural Evolution
A<sub>3</sub>Sc(PO<sub>4</sub>)<sub>2</sub> (A = Li, Na): rare earth cations effectively regulate phosphate structures for enhanced birefringence
Three Deep-UV Phosphate Optical Materials with Interesting Structural Evolution
Lewis Acidity‐Governed Ion Exchange and Record Birefringence in A′[Ag <sub>3</sub> (PO <sub>3</sub> F) <sub>2</sub> ]
1D Bi ribbon/[PO <sub>4</sub> ] synergy-driven bismuth phosphates for ultraviolet nonlinear optical crystals with large SHG and birefringence
Tuning the Anionic Configuration in ASc<sub>2</sub>(P<sub>2</sub>O<sub>7</sub>)<sub>2</sub> (<i>A</i> = Ba, Pb) through A-Site Cationic Coordination Engineering
The different response in band structures and optical properties induced by spin-orbit coupling in Ba3X2(PO4)4 (X = Sb and Bi): A first-principles investigation
Ultra-Sensitive Gas Sensor Enabled by Architectural and Electronic Synergy in Bio-Templated ZnO/Hollow Carbon Microtubules
Utilizing the Built-In Electric Field of SnS<sub>2</sub>/C<sub>3</sub>N Heterostructure to Promote High-Performance Lithium-Ion Batteries
Single Transition‐Metal Atom Anchored on a Rhenium Disulfide Monolayer: An Efficient Bifunctional Electrocatalyst for the Oxygen Evolution and Oxygen Reduction Reactions
Enhancement of Birefringence in π-Conjugated Oxyfluorides Achieved via van der Waals Layered Structural Optimization
NaVSeO<sub>5</sub>: synergistic combinations to synthesize excellent birefringent materials
The electronic structures and optical properties induced by spin-orbit-coupling in LiPbPO<sub>4</sub> compound
The Spin–Orbit Effect on the Electronic Structures, Refractive Indices, and Birefringence of X2PO4I (X = Pb, Sn, Ba and Sr): A First-Principles Investigation