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Rechargeable batteries / Electrochemistry / Energy storage / Mass spectrometry / Lithium-ion battery / Lithium iron phosphate battery / Fast ion conductor / Ion-mobility spectrometry / Ionic conductivity / Chemistry / Phosphates / Physics


ARTICLE pubs.acs.org/cm Alkali-ion Conduction Paths in LiFeSO4F and NaFeSO4F Tavorite-Type Cathode Materials Rajesh Tripathi,† Grahame R. Gardiner,‡ M. Saiful Islam,*,‡ and Linda F. Nazar*,†
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Document Date: 2012-02-27 13:59:16


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anti-site / higher energy density / low activation energy / involved activation energy / Energy profiles / chemical formula / large-scale storage devices / experimental activation energy values / ion site / renewable energy sources / distinct activation energy / energy storage devices / charge carrier / energy density / alkali metal / proposed polyanionic transition metal phosphates / vacancy formation energy / energy / low activation energy pathway / potential energy / crystalline systems / migration activation energy / energy sector / lowest-energy path / lowest migration energy / transition metal / chemical diffusion coefficient / activation energy / space / /

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