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Lithium-ion battery / Lithium / Zinc–air battery / Peroxide / Redox / Fuel cell / Rechargeable battery / Propylene carbonate / Chemical reaction / Chemistry / Battery / Lithium compounds


Electrochemical and Solid-State Letters, A185-A188A185/4/$28.00 © The Electrochemical Society A185 Decomposition Reaction of Lithium Bis(oxalato)borate in the
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Document Date: 2012-02-22 15:10:03


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City

Boston / /

Company

Vertex / M. Tarascon A. S. / V. Giordani S. A. / Canadian Natural / /

Country

United States / Canada / /

Currency

USD / /

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Facility

University of Waterloo / stable Li / /

IndustryTerm

metal / chemical reactions / metal-air battery systems / decomposition products / gas evolution reactions / enough network / reaction product / free energy / main solid discharge product / possible energy source / metal oxide catalysts proceeds / energy densities / atm oxygen gas / reaction site / insoluble discharge product / final insoluble products / aprotic solution / discharge products / porous carbon network / gas evolution / discharge product / chemical dismutation reaction / aqueous solution / main discharge product / /

Organization

Engineering Council / Electrochemical Society / University of Waterloo / Linda F. Nazar ∗ / z Department of Chemistry / /

Person

R. McGuire Jr. / Ekaterina Pomerantseva / C. Lu / H. A. Gasteiger / E. Crumlin / Taeeun Yim / Y. Shao-Horn / M. W. Chase Jr. / V. Chiloyan / Linda F. Nazar / /

Position

Canada Research Chair / /

Product

lithium carbonate / /

ProvinceOrState

Colorado / Ontario / /

Technology

radiation / X-ray / ATM / fuel cell / Electrochemistry / performed using a Bruker D8-Advance powder diffractometer using CuKα1 radiation / /

URL

http /

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