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Rechargeable batteries / Physical chemistry / Lithium-ion battery / Sulfur / Polysulfide / Lithium battery / Electrolyte / Electrochemistry / Fuel cell / Battery / Chemistry / Energy


View Online / Journal Homepage / Table of Contents for this issue HIGHLIGHT www.rsc.org/materials | Journal of Materials Chemistry
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Document Date: 2012-03-07 18:22:50


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City

New York / Waterloo / /

Company

Fe Co / McGraw-Hill / J. Ind. / Exxon / Li2S and Co / /

Country

United States / Canada / /

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Facility

Jilin University / University of Waterloo / University of Toronto / California Institute of Technology / University of California / /

IndustryTerm

Online Table / reduced energy density / high theoretical specific energy density / higher energy density / increased energy density / sulfur networks / renewable energy sources / high energy density / metal powder / lithium metal / energy density / alkali metal / metal alloy layers / porous systems / chemical gradient / energy / sulfur systems / energy storage / chemical adsorption methods / Online Attention / final discharge products / Online Downloaded / bare metal / sulfur energy storage systems / energy storage systems / metal anodes / 3D wire network / energy storage system / large scale applications / /

Organization

California Institute of Technology / Jilin University / University of California / Santa Barbara / Royal Society of Chemistry / University of Waterloo / Electrochemistry Society / Department of Chemistry / University of Toronto / /

Person

H. K. Liu / Xiulei Ji / S. H. Ng / Nat / X. P. Ai / K. Feng / H. X. Yang / Linda F. Nazar / Y. L. Cao / S. L. Chou / S. L. Chen / /

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Position

mixed ionic electronic conductor / Professor / Professor of Chemistry / Chair Research / Cao / /

Product

polyethylene glycol / /

ProvinceOrState

New York / California / Ontario / /

PublishedMedium

Sulfur / /

Technology

sorption / fuel cell / Electrochemistry / /

URL

http /

SocialTag