I am a leading expert in the field of lithium-ion battery (LIB) safety, focusing on understanding and mitigating the risks associated with thermal runaway (TR). My work, and co-authorships listed below, bridges the gap between computational modelling and experimental testing to develop safer battery designs.
Battery age monitoring: Ultrasonic monitoring of ageing and degradation in lithium-ion batteries [Visit publisher]
Review of gas emissions from lithium-ion battery thermal runaway failure — Considering toxic and flammable compounds [Visit publisher]
A review of ultrasonic monitoring: Assessing current approaches to Li-ion battery monitoring and their relevance to thermal runaway [Visit publisher]
Predictive hazard level assessment of Li-ion cell thermal runaway failure [Visit publisher]
Towards a micro-kinetic model of Li-ion battery thermal runaway — Reaction network analysis of dimethyl carbonate thermal decomposition [Visit publisher]
Predicting the Evolution of Flammable Gases During Li-ion Battery Thermal Runaway Using Micro-Kinetic Modelling [Visit publisher]
Perspectives on Future CCUS Infrastructure Design [Visit publisher]
Gaussian-Process based inference of electrolyte decomposition reaction networks in Li-ion battery failure [Visit publisher]
Experimental and Computational Analyses of Thermal Runaway in Lithium Iron Phosphate Cells and Battery Packs [Visit publisher]
Advanced abuse modelling of Li-ion cells – A novel description of cell pressurisation and simmering reactions [Visit publisher]
Computational modelling of thermal runaway propagation potential in lithium iron phosphate battery packs [Visit publisher]
A study of the thermal runaway of lithium-ion batteries: A Gaussian Process based global sensitivity analysis [Visit publisher]
Parameter Estimation for Thermal Runaway of Li-ion cells: a Gaussian Process approach [Visit publisher]
Pursuing safer batteries: Thermal abuse of LiFePO4 cells [Visit publisher]
Assessment of thermal runaway in commercial lithium iron phosphate cells due to overheating in an oven test [Visit publisher]
Methodology to determine the heat capacity of lithium-ion cells [Visit publisher]