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Graphene / Nanomaterials / Redox / Graphite oxide / Oxide / Electrochemistry / Reduction potential / Chemistry / Emerging technologies / Chemical reactions


. Angewandte Communications DOI: anieElectrocatalysis
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Document Date: 2013-10-22 18:36:59


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City

Spinel / Toronto / Weinheim / /

Company

Wiley-VCH Verlag GmbH & Co. KGaA / MnCo / ION-TOF Gmbh / Q. / /

Country

Canada / /

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Facility

Nanotechnology University of Waterloo / Waterloo Institute / Chemistry University of Waterloo / Chemical Engineering University of Toronto / University Ave W. / /

IndustryTerm

aprotic media / decomposition products / high metal oxide content / high metal oxide dispersion / metal oxide / electrolyte systems / high energy density / crystalline product / metal oxide promoter / response solution / aqueous media / electronic energy / metal oxide catalysts / imaging / activation energy / metal oxide surfaces / energy / /

Organization

L. F. Nazar Department of Chemistry / Waterloo Institute / C. A. Mims Department / B. Adams Department / University of Waterloo / University of Toronto / /

Person

L. F. Nazar / D. C. Miller / V / U. Kolb / Jin-Hyon Lee / John B. Goodenough / Nat / Robert Black / Brian Adams / Charles A. Mims / C. A. Mims / Linda F. Nazar / /

Position

Professor / representative / Cao / /

ProvinceOrState

Oregon / Ontario / /

PublishedMedium

Angewandte Chemie / /

Technology

radiation / X-ray / spectroscopy / electrochemistry / /

URL

http /

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