Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Materials science, X-ray photoelectron spectroscopy, Oxygen evolution, Chemistry, Oxide, and Topological insulator.
High‐Entropy Liquid Metal Process for Transparent Ultrathin <i>p</i>‐Type Gallium Oxide
Triplet Sulfur Radical Pairs Stabilized through Hund’s Rule for Ultrafast Lithium–Sulfur Batteries
Developing high-power Li||S batteries via transition metal/carbon nanocomposite electrocatalyst engineering
2024 roadmap on 2D topological insulators
Engineering Magnetic Heterostructures with Synergistic Regulation of Charge‐Transfer and Spin‐Ordering for Enhanced Water Oxidation
Creating Spin Channels in SrCoO<sub>3</sub> through Trigonal‐to‐Cubic Structural Transformation for Enhanced Oxygen Evolution/Reduction Reactions
Creating Spin Channels in SrCoO <sub>3</sub> through Trigonal‐to‐Cubic Structural Transformation for Enhanced Oxygen Evolution/Reduction Reactions
Understanding the activity and stability of flame-made Co3O4 spinels: A route towards the scalable production of highly performing OER electrocatalysts
Reversible Oxidation of Blue Phosphorus Monolayer on Au(111)
Electric-field-tuned topological phase transition in ultrathin Na3Bi
Tuning the Electronic Structure of NiO via Li Doping for the Fast Oxygen Evolution Reaction
Depth-profiling of Yb<sup>3+</sup> sensitizer ions in NaYF<sub>4</sub> upconversion nanoparticles
Electronic Properties of High-Quality Epitaxial Topological Dirac Semimetal Thin Films
Probing the effect of the Pt–Ni–Pt(111) bimetallic surface electronic structures on the ammonia decomposition reaction
Creating a Stable Oxide at the Surface of Black Phosphorus
Phase Transformation in Laser‐Induced Micro‐Explosion in Olivine (Fe,Mg)<sub>2</sub>SiO<sub>4</sub>
Investigating the Local Structure of Lanthanoid Hafnates Ln<sub>2</sub>Hf<sub>2</sub>O<sub>7</sub> via Diffraction and Spectroscopy