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The principal driver for my research is electrochemical methodology. I have several areas of interest with a central connecting theme being electrochemistry. Examples of areas that I work in are:
(a) Gas phase electrochemistry: The central hypothesis is based on considering a gaseous plasma as either an electrolyte in much the same way as a liquid or solid electrolyte, or an electrode due to the availability of free electrons. This is a significant discovery that represents a paradigm shift in electrochemical science and is opening new avenues for research, e.g. the development of an GC analyser, surface oxide patterning as well as understanding the dynamics of gas phase redox reactions.
The principal driver for my research is electrochemical methodology. I have several areas of interest with a central connecting theme being electrochemistry. Examples of areas that I work in are:
(a) Gas phase electrochemistry: The central hypothesis is based on considering a gaseous plasma as either an electrolyte in much the same way as a liquid or solid electrolyte, or an electrode due to the availability of free electrons. This is a significant discovery that represents a paradigm shift in electrochemical science and is opening new avenues for research, e.g. the development of an GC analyser, surface oxide patterning as well as understanding the dynamics of gas phase redox reactions.
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crossref(2024)
Meeting abstractsno. 20 (2023): 1519-1519
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Oliver S. J. Hagger, M. Emre Sener, Imran Khan, Francis Lockwood Estrin, Stefanos Agrotis, Albertus D. Handoko,Ivan P. Parkin,Daren J. Caruana
MATERIALS ADVANCESno. 15 (2023): 3239-3245
ECS Meeting Abstractsno. 24 (2022): 995-995
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ECS Meeting Abstractsno. 22 (2021): 865-865
ECS Meeting Abstractsno. 17 (2020): 1110-1110
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