Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Advancements in Battery Materials, Electrocatalysts for Energy Conversion, Advanced Battery Materials and Technologies, and Electron and X-Ray Spectroscopy Techniques.
Nanoscale Origin of the Soft-to-Hard Short-Circuit Transition in Inorganic Solid-State Electrolytes
A Self‐Healing, Flowable, Yet Solid Electrolyte Suppresses Li‐Metal Morphological Instabilities
Growing single-crystalline seeds on lithiophobic substrates to enable fast-charging lithium-metal batteries
Disordered Au Nanoclusters for Efficient Ammonia Electrosynthesis
Graphene-nanopocket-encaged PtCo nanocatalysts for highly durable fuel cell operation under demanding ultralow-Pt-loading conditions
Design of Ru-Ni diatomic sites for efficient alkaline hydrogen oxidation
Tension‐Induced Cavitation in Li‐Metal Stripping
Activating Single‐Atom Ni Site via First‐Shell Si Modulation Boosts Oxygen Reduction Reaction
Synergic grain boundary segregation and precipitation in W- and W-Mo-containing high-entropy borides
Bulk high-entropy hexaborides
A disordered rock salt anode for fast-charging lithium-ion batteries
Promoting H2O2 production via 2-electron oxygen reduction by coordinating partially oxidized Pd with defect carbon
Tailoring the Antipoisoning Performance of Pd for Formic Acid Electrooxidation via an Ordered PdBi Intermetallic
Sulphur modulated Ni3FeN supported on N/S co-doped graphene boosts rechargeable/flexible Zn-air battery performance
Diatomite‐Derived Hierarchical Porous Crystalline‐AmorphousNetwork for High‐Performance and Sustainable Si Anodes
Dopant Distribution in Co-Free High-Energy Layered Cathode Materials
Elucidating the Limit of Li Insertion into the Spinel Li<sub>4</sub>Ti<sub>5</sub>O<sub>12</sub>
Regioselective surface encoding of nanoparticles for programmable self-assembly
Liquid-Like, Self-Healing Aluminum Oxide during Deformation at Room Temperature
Bimetallic Nanoparticle Oxidation in Three Dimensions by Chemically Sensitive Electron Tomography and <i>in Situ</i> Transmission Electron Microscopy
Theory-driven design of high-valence metal sites for water oxidation confirmed using in situ soft X-ray absorption
Synchrotron X-ray Analytical Techniques for Studying Materials Electrochemistry in Rechargeable Batteries
Homogeneously dispersed multimetal oxygen-evolving catalysts
In Situ STEM-EELS Observation of Nanoscale Interfacial Phenomena in All-Solid-State Batteries
Effects of cathode electrolyte interfacial (CEI) layer on long term cycling of all-solid-state thin-film batteries
Spontaneous incorporation of gold in palladium-based ternary nanoparticles makes durable electrocatalysts for oxygen reduction reaction
Prescribed nanoparticle cluster architectures and low-dimensional arrays built using octahedral DNA origami frames
Transitions from Near-Surface to Interior Redox upon Lithiation in Conversion Electrode Materials
Highly Crystalline Multimetallic Nanoframes with Three-Dimensional Electrocatalytic Surfaces
Coalescence in the Thermal Annealing of Nanoparticles: An in Situ STEM Study of the Growth Mechanisms of Ordered Pt–Fe Nanoparticles in a KCl Matrix