Area of research
Renewable Energy, Sustainability and the Environment · Electrical and Electronic Engineering
Research interest
Research focused on Electrolysis and Bubble, with related work in Electrode, Alkaline water electrolysis, Electrolysis of water. Notable publications include 'A high-performance capillary-fed electrolysis cell promises more cost-competitive renewable hydrogen', 'The prospects of developing a highly energy-efficient water electrolyser by eliminating or mitigating bubble effects', and 'A new class of bubble-free water electrolyzer that is intrinsically highly efficient'.
The Prospects of Developing Ultrahigh Energy Efficiency Hydrogen–Oxygen Fuel Cells
The Low Oxidation State Paradigm is More Consistent with XFEL Observations of the S₃ → [S₄] → S₀ Transition in Photosystem II
XFEL‐Detected Peroxide Formation From the S <sub>3</sub> State Supports the Low Oxidation State over the High Oxidation State Paradigm in Photosystem II
Mechanisms of Mn(V)‐Oxo to Mn(IV)‐Oxyl Conversion: From Closed‐Cubane Photosystem II to Mn(V) Catalysts and the Role of the Entering Ligands
Mechanistic elucidation of O<sub>2</sub> production from <sup><i>t</i></sup>BuOOH in water using the Mn(<scp>ii</scp>) catalyst [Mn<sub>2</sub>(mcbpen)<sub>2</sub>(H<sub>2</sub>O)<sub>2</sub>]<sup>2+</sup>: a DFT study
Hydrogen Generation by Nickel Electrodes Coated with Linear Patterns of PTFE
Author Correction: A high-performance capillary-fed electrolysis cell promises more cost-competitive renewable hydrogen
Elucidating the catalytic mechanisms of O<sub>2</sub> generation by [Mn<sub>2</sub>(μ-O)<sub>2</sub>(terpy)<sub>2</sub>(OH<sub>2</sub>)<sub>2</sub>]<sup>3+</sup> using DFT calculations: a focus on ClO<sup>−</sup> as oxidant
Carbon Dioxide Adsorption by a High-Surface-Area Activated Charcoal
XRD and Spectroscopic Investigations of ZIF—Microchannel Glass Plates Composites
Critical Analysis of Published Physical Property Data for Aqueous Potassium Hydroxide. Collation into Detailed Models for Alkaline Electrolysis
Bubble detection on the cathode and anode of a high-performing capillary-fed water electrolysis cell
Bubble Detection on the Cathode and Anode of a High-Performing Capillary-Fed Water Electrolysis Cell
A high-performance capillary-fed electrolysis cell promises more cost-competitive renewable hydrogen
High-performing catalysts for energy-efficient commercial alkaline water electrolysis
High Surface Area Activated Charcoal for Water Purification
Solar-Light-Driven Ag9(SiO4)2NO3 for Efficient Photocatalytic Bactericidal Performance
Extraction and Identification of Effective Compounds from Natural Plants
The prospects of developing a highly energy-efficient water electrolyser by eliminating or mitigating bubble effects
Current status of membraneless water electrolysis cells
Conducting-Polymer Nanocomposites as Synergistic Supports That Accelerate Electro-Catalysis: PEDOT/Nano Co3O4/rGO as a Photo Catalyst of Oxygen Production from Water
Stable and Efficient Photoinduced Charge Transfer of MnFe2O4/Polyaniline Photoelectrode in Highly Acidic Solution
Correction: The prospects of developing a highly energy-efficient water electrolyser by eliminating or mitigating bubble effects
Insights into the phenomenon of ‘bubble-free’ electrocatalytic oxygen evolution from water
Photocatalytic Hydrogen Generation from pH-Neutral Water by a Flexible Tri-Component Composite
Synergistic amplification of (photo)catalytic oxygen and hydrogen generation from water by thin-film polypyrrole composites
Comparative evaluation of the structural and other features governing photo-electrochemical oxygen evolution by Ca/Mn oxides
Electronic structure modelling of the edge-functionalisation of graphene by Mn<sub>x</sub>O<sub>y</sub> particles
A new class of bubble-free water electrolyzer that is intrinsically highly efficient
Photo-Electrochemical Oxygen Evolution Reaction by Biomimetic CaMn2O4 Catalyst