Search Results - "Frith, James T."
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A non-academic perspective on the future of lithium-based batteries
Published in Nature communications (26-01-2023)“…In the field of lithium-based batteries, there is often a substantial divide between academic research and industrial market needs. This is in part driven by a…”
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Understanding LiOH Chemistry in a Ruthenium‐Catalyzed Li–O2 Battery
Published in Angewandte Chemie International Edition (11-12-2017)“…Non‐aqueous Li–O2 batteries are promising for next‐generation energy storage. New battery chemistries based on LiOH, rather than Li2O2, have been recently…”
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3
A redox shuttle to facilitate oxygen reduction in the lithium air battery
Published in Electrochemistry communications (01-01-2013)“…A novel design of the non-aqueous lithium air cell is presented with a demonstration of a new reaction concept, involving a soluble redox shuttle to catalyse…”
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4
Utilization of Cobalt Bis(terpyridine) Metal Complex as Soluble Redox Mediator in Li–O2 Batteries
Published in Journal of physical chemistry. C (04-08-2016)“…Redox mediators hold significant promise in reducing the large overpotentials pervasive upon charging of lithium–oxygen (Li–O2) cells. Cobalt bis(terpyridine)…”
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5
An in-situ Raman study of the oxygen reduction reaction in ionic liquids
Published in Electrochemistry communications (01-09-2014)“…In-situ Raman spectroscopy is applied, for the first time, to elucidate the reaction products of oxygen reduction in two types of ionic liquids:…”
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6
Understanding LiOH Chemistry in a Ruthenium-Catalyzed Li-O 2 Battery
Published in Angewandte Chemie International Edition (11-12-2017)“…Non-aqueous Li-O batteries are promising for next-generation energy storage. New battery chemistries based on LiOH, rather than Li O , have been recently…”
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7
The Effect of Water on Quinone Redox Mediators in Nonaqueous Li-O 2 Batteries
Published in Journal of the American Chemical Society (31-01-2018)“…The parasitic reactions associated with reduced oxygen species and the difficulty in achieving the high theoretical capacity have been major issues plaguing…”
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8
The Effect of Water on Quinone Redox Mediators in Nonaqueous Li‑O2 Batteries
Published in Journal of the American Chemical Society (31-01-2018)“…The parasitic reactions associated with reduced oxygen species and the difficulty in achieving the high theoretical capacity have been major issues plaguing…”
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9
Understanding the charge/discharge mechanisms and passivation reactions in Na-O2 batteries
Published in Journal of power sources (2017)“…Sodium-oxygen batteries are becoming of increasing interest in the research community as they are able to overcome some of the difficulties associated with…”
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10
Understanding LiOH Chemistry in a Ruthenium‐Catalyzed Li–O2 Battery
Published in Angewandte Chemie (11-12-2017)“…Non‐aqueous Li–O2 batteries are promising for next‐generation energy storage. New battery chemistries based on LiOH, rather than Li2O2, have been recently…”
Get full text
Journal Article -
11
Utilization of Cobalt Bis(terpyridine) Metal Complex as Soluble Redox Mediator in Li–O 2 Batteries
Published in Journal of physical chemistry. C (04-08-2016)Get full text
Journal Article -
12
Understanding the charge/discharge mechanisms and passivation reactions in Na-O 2 batteries
Published in Journal of power sources (31-03-2017)Get full text
Journal Article -
13
Understanding LiOH Chemistry in a Ruthenium‐Catalyzed Li–O 2 Battery
Published in Angewandte Chemie (11-12-2017)“…Abstract Non‐aqueous Li–O 2 batteries are promising for next‐generation energy storage. New battery chemistries based on LiOH, rather than Li 2 O 2 , have been…”
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Journal Article -
14
Understanding LiOH Chemistry in a Ruthenium Catalyzed Li-O2 Battery
Published 08-05-2018“…Non-aqueous Li-O2 batteries are promising for next generation energy storage. New battery chemistries based on LiOH, rather than Li2O2, have recently been…”
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Journal Article -
15
The Effect of Water on Quinone Redox Mediators in Non- aqueous Li-O2 Batteries
Published 08-05-2018“…The parasitic reactions associated with reduced oxygen species and the difficulty in achieving the high theoretical capacity have been major issues plaguing…”
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