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Rechargeable batteries / Chemical elements / Lithium–sulfur battery / Lithium-ion battery / Lithium battery / Lithium / Sulfur / Thiosulfate / Hydride / Battery / Chemistry / Matter


ARTICLE Received 23 Sep 2014 | Accepted 27 Oct 2014 | Published 6 Jan 2015 DOI: ncomms6682 A highly efficient polysulfide mediator
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Document Date: 2015-01-16 18:21:08


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City

Dudney / Ludwigshafen / Waterloo / /

Company

BASF SE / Macmillan Publishers Limited. / ACS / Freunberger S. A. / Sigma-Aldrich / LiPSs / TEM / /

Country

Germany / United States / Canada / /

Currency

pence / /

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Facility

MacMaster University / University of Waterloo / ncomms6682 complex / University Avenue West / /

IndustryTerm

medium chain / portable electronics devices / satellite peaks / chemical approach / high energy density / hydrophilic metal oxide hosts / electrochemical energy storage / energy density / energy values / lower energy / theoretical energy density limits1 / aqueous solution / energy storage batteries / energy / theoretical energy density / lower binding energy component / high energy density lithium-sulfur batteries / data processing / similar binding energy / large-scale energy storage increases / chemical process / energy storage several times / high-energy lithium battery / electron binding energy / battery systems / metallic metal oxide sulfur hosts / chemical method / high energy storage / chemical interaction / /

MusicAlbum

Black / Nazar / /

Organization

University of Waterloo / Canadian Centre for Electron Microscopy / Department of Chemistry / MacMaster University / /

Person

Nat / Carmen Andrei / Sharon / /

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Position

Archer / carbon paper current collector / efficient polysulfide mediator for lithium–sulfur batteries / Miner / http /

Product

sodium thiosulfate / Sigma / GO suspension / /

ProvinceOrState

New Jersey / Nova Scotia / Ontario / /

PublishedMedium

Inorganic Chemistry / /

Technology

semiconductor / X-ray / spectroscopy / electrochemistry / /

URL

http /

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