Area of research
Renewable Energy, Sustainability and the Environment · Materials Chemistry
Research interest
Research interests include Hydrogen Storage and Materials, Electrocatalysts for Energy Conversion, Ammonia Synthesis and Nitrogen Reduction, and Advanced Photocatalysis Techniques.
Residual ligand-functionalized ultrathin Ni(OH)2 via reconstruction for high-rate HO2− electrosynthesis
Bimetallic Peroxide Nanocomposites‐Driven Redox Dyshomeostasis to Activate Sequential Cuproptosis and Pyroptosis for Amplified Tumor Immunotherapy
Dynamic transformation of active sites in energy and environmental catalysis
Carbonaceous Anodes and Compatible Exoelectrogens in High-Performance Microbial Fuel Cells: A Review
Nearly 100% selective and visible-light-driven methane conversion to formaldehyde via. single-atom Cu and Wδ+
Selective saccharification of crude glycerol pretreated sugarcane bagasse via fast pyrolysis: Reaction kinetics and life cycle assessment
<i>In situ</i>protonated-phosphorus interstitial doping induces long-lived shallow charge trapping in porous C<sub>3−<i>x</i></sub>N<sub>4</sub>photocatalysts for highly efficient H<sub>2</sub>generation
Tuning the interlayer spacing of graphene laminate films for efficient pore utilization towards compact capacitive energy storage
Assembly of 1T′-MoS<sub>2</sub> based fibers for flexible energy storage
Strain Engineering of a Defect-Free, Single-Layer MoS<sub>2</sub> Substrate for Highly Efficient Single-Atom Catalysis of CO Oxidation
Multivalency-Driven Formation of Te-Based Monolayer Materials: A Combined First-Principles and Experimental study
Active sites engineering leads to exceptional ORR and OER bifunctionality in P,N Co-doped graphene frameworks
Visible-light driven heterojunction photocatalysts for water splitting – a critical review
Chemically Modified Graphene/Polyimide Composite Films Based on Utilization of Covalent Bonding and Oriented Distribution