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First-Principles Study of Lithium Intercalation and Diffusion in Oxygen-Defective Titanium Dioxide

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Titanium dioxide has attracted considerable attention as a potential alternative anode material in lithium-ion rechargeable batteries. In recent years, the incorporation of oxygen vacancy into such anode materials has been… Click to show full abstract

Titanium dioxide has attracted considerable attention as a potential alternative anode material in lithium-ion rechargeable batteries. In recent years, the incorporation of oxygen vacancy into such anode materials has been demonstrated to improve electrical conductivity, cycling stability, and rate performance through experimental studies. In this work, lithium intercalation and diffusion behavior in pristine and oxygen-defective TiO2 were studied by first principles based on density functional theory calculations. Total energies of possible intercalation sites were first calculated to find the most favorable site in the three commonly used polymorphs: anatase, rutile, and TiO2(B). Furthermore, the energy barriers of possible paths for lithium diffusion from one stable site to another have been calculated by the climbing image nudged elastic band method. The electronic structures are also presented to compare conductivities of pristine and oxygen-defective TiO2. Our results indicate that although all thre...

Keywords: oxygen; lithium intercalation; diffusion; titanium dioxide; oxygen defective

Journal Title: Journal of Physical Chemistry C
Year Published: 2018

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