4.3 Article

Mesoporous electrode material from alumina-stabilized anatase TiO2 for lithium ion batteries

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JOURNAL OF SOLID STATE ELECTROCHEMISTRY
卷 9, 期 3, 页码 138-145

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SPRINGER
DOI: 10.1007/s10008-004-0564-3

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titanium dioxide; alumina; lithium battery; mesoporous materials

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A mesoporous electrode material whose structure is composed of anatase nanocrystals stabilized by alumina is reported. Powder X-ray diffraction shows the anatase phase only, but micro-Raman spectroscopy shows that the materials have a core-shell morphology with grains of bulk anatase covered by a thin rutile layer on the surface. This structure is unique when compared to analogous materials stabilized by zirconia (PNNL-1). Nitrogen adsorption isotherms demonstrate a monotonous increase in surface area and mesopore volume with increasing Al content. Thin film electrodes from these materials were characterized by lithium insertion electrochemistry. Cyclic voltammograms exhibit significant differences in Li accommodation in Al-free and Al-stabilized materials.

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