Solid state rapid quenching method to synthesize micron size Li sub(4)Ti sub(5)O sub(12)
Li sub(4)Ti sub(5)O sub(12) spinel has been synthesized by a new solid-state rapid quenching method adopting solid-state synthesis followed by quenching leading to stoichiometric phase pure micron size material. By simple freezing of the solid-state reaction occurring at 800 degree C using ice cold...
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Veröffentlicht in: | Journal of electroceramics 2007-08, Vol.18 (3-4), p.329-337 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Li sub(4)Ti sub(5)O sub(12) spinel has been synthesized by a new solid-state rapid quenching method adopting solid-state synthesis followed by quenching leading to stoichiometric phase pure micron size material. By simple freezing of the solid-state reaction occurring at 800 degree C using ice cold medium, micron sized particulates are achieved. The powder has been characterized by X-ray diffraction, SEM, etc. By this synthesis uniform morphology has been attained and particle size of fine particulates of Li sub(4)Ti sub(5)O sub(12) of an average size of 1-2 mu m has been achieved. High rate characteristic and excellent cyclability are the highlights of newly synthesized material. Diffusion coefficient of Lithium has been evaluated and it is found to be 1.410 super(-15) cm super(2) s super(-1). A maximum reversible lithium insertion capacity of 154 mAhg super(-1) at 2 C rate has been achieved. Results are discussed in this paper. |
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ISSN: | 1385-3449 1573-8663 |
DOI: | 10.1007/s10832-007-9129-z |