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Phosphates / Physical chemistry / Lithium iron phosphate battery / Lithium battery / Lithium / Zinc–air battery / Electrolyte / Electrochemistry / Thin film rechargeable lithium battery / Battery / Rechargeable batteries / Lithium-ion batteries


. Angewandte Reviews J. Cho, P. G. Bruce et al.
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Document Date: 2012-10-23 17:38:34


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File Size: 4,67 MB

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City

Weinheim / Argonne / /

Company

Fe Co / Replacing Co / Mn Co / Ni Co / Wiley-VCH Verlag GmbH & Co. KGaA / Sun / Sony Corporation / Engineering Division Argonne National Laboratory / /

Country

Korea / /

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Facility

Engineering Georgia Institute of Technology / University of St Andrews / Graz University of Technology / University of Waterloo / Green Energy Ulsan National Institute of Science / University of St. Andrews St. Andrews / /

IndustryTerm

consumer electronics / transition-metal element increases / energy barrier / higher energy density / metal particles / portable electronic devices / increased energy density / transportation sector / Metal doping / lithium transition-metal oxide spinels / electrolyte technologies / high energy density / transformed portable electronics / oxidative transition-metal oxide / increased energy / energy density / electrical conduction network / chemical vapor deposition / gas release / chemical reaction / high energy-density batteries / renewable electricity generation / energy / transition-metal layer / metal / power applications / by-products / chemical design / chemical reactions / accelerated chemical reactions / final product / chemical and electrochemical reactions / energy storage / grid applications / chemical composition / high-energy-density / energy-storage technology / gas generation / lithium transition-metal phosphates / active metal ions / gas-phase radical quenching / safety devices / rate applications / energy applications / energy-storage materials / transition-metal oxide framework / solar energy / high-energy lithium-ion batteries / bulk electricity storage / volumetric energy / transition-metal elements / nontransition-metal oxides / gas phase / sustainable and clean energy / transition-metal site / /

Organization

Interdisciplinary School of Green Energy / P. G. Bruce School of Chemistry / L. F. Nazar Department of Chemistry / Y.-K. Sun Department of Chemical Engineering / Institute for Chemistry and Technology of Materials / School of Chemistry / Royal Society of Chemistry / University of Waterloo / G. Yushin School of Materials Science / School of Green Energy Ulsan National Institute of Science & Technology / University of St. Andrews / Converging Research Center for Innovative Battery Technologies / IT Research Center / Georgia Institute of Technology / Atlanta / Hanyang University / Graz University of Technology / J. Cho Interdisciplinary School of Green Energy Ulsan National Institute of Science & Technology / /

Person

Khalil Amine / Ion Batteries / Stefan A. Freunberger / Linda F. Nazar / Gleb Yushin / Z. Chen / Jaephil Cho / Peter G. Bruce / Nam-Soon Choi / J. Cho / S. A. Freunberger / /

Position

Dean / Professor / director / low tackle / Professor of Chemistry / /

ProvinceOrState

Illinois / /

PublishedMedium

Angewandte Chemie / Advanced Functional Materials / /

Technology

10024 Angewandte Chemie Lithium-Ion Batteries Energy-storage technologies / X-ray / energy-storage technology / polymerization / electrolyte technologies / thermal insulation / chemical vapor deposition / dielectric / condensation / Technology of Materials / electrochemistry / /

URL

http /

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