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等离子体诱导的具有碳涂层的刺猬状锐钛矿二氧化钛中的氧空位用于优异的钠离子电池负极。

Plasma-Induced Oxygen Vacancies in Urchin-Like Anatase Titania Coated by Carbon for Excellent Sodium-Ion Battery Anodes.

机构信息

College of Chemistry and Chemical Engineering, ‡Innovation Base of Energy and Chemical Materials for Graduate Students Training, and §School of Mathematics and Statistics, Central South University , Changsha, Hunan 410083, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 Feb 28;10(8):7031-7042. doi: 10.1021/acsami.7b13760. Epub 2018 Feb 13.

Abstract

The incorporation of oxygen vacancies in anatase TiO has been studied as a promising way to accelerate the transport of electrons and Na ions, which is important for achieving excellent electrochemical properties for anatase TiO. However, wittingly introducing oxygen vacancies in anatase TiO for sodium-ion anodes by a facile and effective method is still a challenge. In this work, we report an innovative method to introduce oxygen vacancies into the urchin-like N-doped carbon coated anatase TiO (NC-DTO) by a facile plasma treatment. The superiorities of the oxygen vacancies combined with the conductive N-doped carbon coating enable the obtained NC-DTO of greatly improved sodium storage performance. When served as the anode for sodium-ion batteries, the NC-DTO electrode shows superior electrochemical performance (capacity: 272 mA h g at 0.25 C, capacity retention: 98.8% after 5000 cycles at 10 C, as well as ultrahigh capacity: 150 mA h g at 15 C). Density functional theory calculations combined with experimental results suggest that considerably improved sodium storage performance of NC-DTO is due to the enhanced electronic conductivity from the N-doped carbon layer as well as narrowed band gap and lowered sodiation energy barrier from the introduction of oxygen vacancies. This work highlights that introducing oxygen vacancies into TiO by plasma is a promising method to enhance the electrochemical property of TiO, which also can be applied to different metal oxides for energy storage devices.

摘要

锐钛矿 TiO 中氧空位的掺入被认为是一种加速电子和 Na 离子传输的有效方法,这对于获得优异的锐钛矿 TiO 电化学性能非常重要。然而,通过简单有效的方法在锐钛矿 TiO 中有意引入氧空位作为钠离子阳极仍然是一个挑战。在这项工作中,我们报告了一种通过简单的等离子体处理将氧空位引入到具有刺猬状 N 掺杂碳涂层的锐钛矿 TiO(NC-DTO)中的创新方法。氧空位与导电 N 掺杂碳涂层的结合优势使所获得的 NC-DTO 具有大大改善的钠离子存储性能。当用作钠离子电池的阳极时,NC-DTO 电极表现出优异的电化学性能(在 0.25 C 时容量为 272 mA h g,在 10 C 时 5000 次循环后容量保持率为 98.8%,在 15 C 时超高容量为 150 mA h g)。密度泛函理论计算结合实验结果表明,NC-DTO 具有相当改善的钠离子存储性能归因于 N 掺杂碳层的增强电子导电性以及氧空位引入导致的带隙变窄和钠化能垒降低。这项工作强调了通过等离子体向 TiO 中引入氧空位是一种提高 TiO 电化学性能的有前途的方法,该方法也可应用于不同的金属氧化物以用于储能设备。

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