Area of research
Catalysis · Materials Chemistry
Research interest
Research focused on Catalysis and Dehydrogenation, with related work in Decomposition, Steam reforming, Acetic acid. Notable publications include 'Hydrogen production via steam reforming of acetic acid over biochar-supported nickel catalysts', 'Plasma-catalytic synthesis of ammonia over Ru-based catalysts: Insights into the support effect', and 'Thermal management of GaN HEMT devices using subcooled flow boiling in an embedded manifold microchannel heat sink'.
Preparation and study of high efficiency M-BTC ortho-para hydrogen conversion catalysts
Sol-gel auto-combustion synthesis of bimetallic Pt-Co/Al2O3 catalysts for hydrogen production via acetic acid steam reforming
Ortho to para hydrogen conversion over bimetallic iron and cobalt catalysts
Enhanced catalytic conversion of ortho-hydrogen to para-hydrogen using supported FeMn-HiSiV-3000 catalysts
Study on the Gas-Chromic Character of Pd/TiO2 for Fast Room-Temperature CO Detection
Thermal management of GaN HEMT devices using subcooled flow boiling in an embedded manifold microchannel heat sink
S-Vacancy Defect and Transition-Metal Atom Doping to Trigger Hydrogen Evolution of Two-Dimensional MoS<sub>2</sub>
The synergistic effect of Cu<sup>0</sup> and Cu<sup>+</sup> for one-step synthesis of aviation biofuel from biomass-derived ketones
Plasma-catalytic synthesis of ammonia over Ru-based catalysts: Insights into the support effect
Low-temperature steam reforming of phenol for hydrogen production over Co/Al2O3–ash catalysts
Production of hydrogen by steam reforming of phenol over Ni/Al2O3-ash catalysts
Experimental and DFT studies on catalytic reforming of acetic acid for hydrogen production over B-doped Co/Al2O3 catalysts
Dehydrogenation mechanisms of liquid organic hydrogen carriers over Pt, Pd, Rh, and Ni surfaces: Cyclohexane as a model compound
Hydrogen production via steam reforming of acetic acid over biochar-supported nickel catalysts
Mechanistic study of bio-oil catalytic steam reforming for hydrogen production: Acetic acid decomposition
Modelling and analysis of the combustion behaviour of granulated fuel particles in iron ore sintering
Theoretical study of solvent effects on the decomposition of formic acid over a Co(111) surface
Density Functional Theory and Microkinetic Studies of Bio-oil Decomposition on a Cobalt Surface: Formic Acid as a Model Compound
DFT study of bio-oil decomposition mechanism on a Co stepped surface: Acetic acid as a model compound