Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include ZnO doping and properties, Perovskite Materials and Applications, Magnetic properties of thin films, and Advanced Photocatalysis Techniques.
Multiple B-site doping suppresses ion migration in halide perovskites
Transition Metal Carbonitride MXenes Anchored with Pt Sub-Nanometer Clusters to Achieve High-Performance Hydrogen Evolution Reaction at All pH Range
Janus Adsorption of Polar Ion Hubs for Simultaneous Regulation of Zinc Deposition Kinetics and Interfacial Stability in Long‐Cycle Aqueous Zinc‐Ion Batteries
Dense solid electrolyte interphase and Zn (002) plane texture enabling high depth-of-discharge anode for highly reversible zinc ion batteries
Toward stabilization of formamidinium lead iodide perovskites by defect control and composition engineering
In Situ Assembly of Metal‐Organic Coordination Polymer Layers Enables Highly Reversible Zn Anodes with a Long Cycle Life of over 6900 h
Halide perovskite x-ray detectors: Fundamentals, progress, and outlook
Quantitative Identification of Dopant Occupation in Li‐Rich Cathodes
Assessing the Optoelectronic Performance of Halide Perovskite Quantum Dots with Identical Bandgaps: Composition Tuning Versus Quantum Confinement
Arrayed metal phosphide heterostructure by Fe doping for robust overall water splitting
Enhanced solar urea synthesis from CO2 and nitrate waste via oxygen vacancy mediated-TiOx support lead-free perovskite
Superconductivity and interfaces
De-templated crystallization in 2D perovskites for enhanced photovoltaic efficiency
Nanoarchitectonics of La‐Doped Ni<sub>3</sub>S<sub>2</sub>/MoS<sub>2</sub> Hetetostructural Electrocatalysts for Water Electrolysis
Competition Pathways of Energy Relaxation of Hot Electrons through Coupling with Optical, Surface, and Acoustic Phonons
Tailoring the electronic structure of Ni5P4/Ni2P catalyst by Co2P for efficient overall water electrolysis
Highly Stable and Efficient Formamidinium‐Based 2D Ruddlesden–Popper Perovskite Solar Cells via Lattice Manipulation
High-entropy catalysts for electrochemical water-electrolysis of hydrogen evolution and oxygen evolution reactions
Realization of High Magnetization in Artificially Designed Ni/NiO Layers through Exchange Coupling
Transporting holes stably under iodide invasion in efficient perovskite solar cells
Ultrasonic-assisted polyaniline-multiwall carbon nanotube photocatalyst for efficient photodegradation of organic pollutants
Auger scattering dynamic of photo-excited hot carriers in nano-graphite film
Ultranarrow Bandgap Se‐Deficient Bimetallic Selenides for High Performance Alkali Metal‐Ion Batteries
Oriented Low‐n Ruddlesden‐Popper Formamidinium‐Based Perovskite for Efficient and Air Stable Solar Cells
Ordered Mesoporous Boron Carbon Nitrides with Tunable Mesopore Nanoarchitectonics for Energy Storage and CO<sub>2</sub> Adsorption Properties
Giant hot electron thermalization via stacking of graphene layers
Minimizing and Controlling Hydrogen for Highly Efficient Formamidinium Lead Triiodide Solar Cells
Engineering Nanostructure–Interface of Photoanode Materials Toward Photoelectrochemical Water Oxidation
Fabrication of MOFs’ derivatives assisted perovskite nanocrystal on TiO2 photoanode for photoelectrochemical glycerol oxidation with simultaneous hydrogen production
Incorporating plasmonic Au-nanoparticles into three-dimensionally ordered macroporous perovskite frameworks for efficient photocatalytic CO2 reduction