Electrochemical properties of spinel Li4Ti5O12 nanoparticles prepared via a low-temperature solid route

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作者
Mamoru Senna
Martin Fabián
Ladislav Kavan
Markéta Zukalová
Jaroslav Briančin
Erika Turianicová
Patrick Bottke
Martin Wilkening
Vladimír Šepelák
机构
[1] Slovak Academy of Sciences,Institute of Geotechnics
[2] Keio University,Faculty of Science and Technology
[3] Academy of Sciences of the Czech Republic,J. Heyrovsky Institute of Physical Chemistry
[4] Graz University of Technology,Institute for Chemistry and Technology of Materials, Christian Doppler Laboratory for Lithium Batteries
[5] Karlsruhe Institute of Technology,Institute of Nanotechnology
关键词
Li; Ti; O; Reactive precursor; Li-ion battery anode; Cyclic voltammetry; Impurity phases;
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摘要
Spinel phase Li4Ti5O12 (s-LTO) with an average primary particle size of 150 nm was synthesised via a solid state route by calcining a precursor mixture at 600 °C. The precursor was prepared from a stoichiometric mixture of TiO2 nanoparticles and an ethanolic solution of Li acetate and activated by ball-milling. Effects of the calcination temperature and atmosphere are examined in relation to the coexistence of impurity phases by X-ray diffraction and 6Li MAS NMR. The charge capacity of s-LTO, determined from cyclic voltammogram at a scan rate of 0.1 mV/s, was 142 mAh/g. The capacity of our optimised material is superior to that of commercially available spinel (a-LTO), despite the considerably smaller BET-specific surface area of the former. The superior properties of our material were also demonstrated by galvanostatic charging/discharging. From these observations, we conclude that the presented low-temperature solid state synthesis route provides LTO with improved electrochemical performance.
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页码:2673 / 2683
页数:10
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