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Simple size control of TiO2 nanoparticles and their electrochemical performance: emphasizing the contribution of the surface area to lithium storage at high-rates

机译:简单的二氧化钛纳米颗粒和尺寸控制他们的电化学性能:强调锂的表面面积的贡献存储在高

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摘要

The particle size effects of TiO2 nanoparticles (TNPs), which are composed of small crystallites, on Li ion storage are a very fundamental and important subject. However, size control of TNPs under 200 nm using a sol-gel method has been limited due to the highly reactive precursor, titanium alkoxide. In this study, TNPs with various sizes even under 100 nm are obtained by controlling the reactant concentrations in a mixed solvent of ethanol and acetonitrile. Among them, three different sizes of TNPs are prepared to compare the Li ion storage capacity, and 60 nm TNPs are found to have the best reversible capacity of 182 mA h g(-1) after 50 cycles at 1 C and a remarkable rate performance of 120 mA h g(-1) at 10 C. Capacity increase upon cycling is observed in the size-controlled TNPs, and the explanation of this phenomenon is proposed to the lattice volume expansion of TiO2 upon intercalation for enabling further penetration of the electrolyte into the particles' interior. Moreover, the capacity at high rates is more closely related to the surface area from Hg porosimetry analysis than from typical N-2 adsorption/desorption analysis.
机译:二氧化钛纳米粒子粒径的影响(tnp),它是由小雏晶,在李离子存储是一个非常基本的和重要的话题。使用溶胶-凝胶方法在200海里有限的由于高活性的前兆,钛醇盐。各种大小甚至获得的100纳米以下在一个控制反应物浓度混合溶剂乙醇和乙腈。准备三种不同大小的对照组比较离子存储容量,和60 nm对照组发现有最好的可逆的容量182毫安h g(1) 50周期后1 C马和非凡的速度性能的120 hg (1) 10 c .容量增加在骑自行车观察到的size-controlled对照组,解释这种现象提出的二氧化钛晶格体积膨胀的为使进一步渗透夹层电解液中粒子的内部。此外,在高更的能力Hg的表面积密切相关porosimetry分析比典型的2吸附/解吸分析。

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