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Electrochemistry / Electroanalytical methods / Hydrogen production / Chemical reactions / Reference electrode / Redox / Electrolysis of water / Standard hydrogen electrode / Electrolysis / Chemistry / Electromagnetism / Electrodes


Communication pubs.acs.org/JACS A Bio-Inspired, Small Molecule Electron-Coupled-Proton Buffer for Decoupling the Half-Reactions of Electrolytic Water Splitting Benjamin Rausch, Mark D. Symes, and Leroy Cronin*
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Document Date: 2013-11-29 10:55:43


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City

Weinheim / Berlin / Vargas-Barbosa / Lewis / Glasgow / New York / /

Company

Crane / Fleming / Wiley-VCH Verlag GmbH & Co. KGaA / Sun L. C. / WileyVCH Verlag GmbH / UV / CRC Press / ASSOCIATED CONTENT / /

Country

United States / United Kingdom / /

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Facility

University Avenue / Glasgow University / University of Glasgow / /

IndustryTerm

mM solution / energy storage medium / diffuse energy inputs / gas evolution reactions / gas analysis / precious metal electrode / gas chromatography headspace analysis / less concentrated solutions / concentrated solutions / Natural photosynthetic systems / aqueous solutions / gas-evolving electrode / precious metal electrodes / /

Organization

American Chemical Society / School of Chemistry / University of Glasgow / Royal Society/Wolfson Foundation for a Merit / Glasgow University / /

Person

Water Splitting Benjamin Rausch / Prince / Nocera / Mark D. Symes / Leroy Cronin / /

Position

Prince / King / mediator / representative / AUTHOR INFORMATION Corresponding Author lee.cronin@glasgow.ac.uk Notes The authors / Gunner / /

ProvinceOrState

New Mexico / Nova Scotia / /

Technology

spectroscopy / gas chromatography / electrolytic cells / Electrochemistry / /

URL

http /

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