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Effect of Surface Fluorination on the Charge/discharge Properties of High Potential Negative Electrode TiO_2(B) for LIBs

机译:表面氟化对LIBS的高电位负电极TiO_2(B)的电荷/放电性能的影响

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Surface fluorination of TiO_2(B) powder was conducted by pure F_2 gas at room temperature for 1 h and the effect on the charge/discharge properties was examined as a negative electrode of Li-ion batteries (LIBs). X-ray diffraction (XRD) pattern was not changed before and after the surface fluorination though the peak intensities became weaker than that of the pristine sample, indicating the etching of the surface of SF-TiO_2(B) power. This was supported by scanning electron microscopy (SEM) observation. However, X-ray photoelectron spectroscopy (XPS) analysis clearly revealed that F atoms exist on the surface of TiO_2(B) particles and probably were covalently bonded with Ti atoms near the surface. From the charge/discharge tests at a C/6 rate, the SF-TiO_2(B) exhibited a higher 1st discharge (203 mAh g~(-1)) than the pristine sample (181 mAh g~(-1)) with a good cycleability. Impedance analysis revealed that both resistances of solid electrolyte interphase (SEI) film and charge transfer at the SEI /active material interface were reduced by surface fluorination, implying the improvement of SEI film and permeability of the electrolyte solution to the interphase. The rate capability was improved by the surface fluorination up to 1C rate, at which the SF-TiO_2(B) exhibited a high discharge capacity of around 150 mAh g~(-1).
机译:通过在室温下通过纯F_2气体进行TiO_2(B)粉末的表面氟化,并将对充电/放电性能的影响作为锂离子电池(Libs)的负极。在表面氟化之前和之后没有改变X射线衍射(XRD)图案,尽管峰强度变弱于原始样品的峰值,但表明SF-TiO_2(B)电力表面的蚀刻。这是通过扫描电子显微镜(SEM)观察来支持。然而,X射线光电子能谱(XPS)分析清楚地显示出F原子存在于TiO_2(B)颗粒的表面上,并且可能与表面附近的Ti原子共价键合。从C / 6速率的充电/放电试验,SF-TiO_2(B)表现出比原始样品(181mAhg〜(-1))的第1放电(203mAh g〜(-1))良好的环状。阻抗分析显示,通过表面氟化降低了SEI /活性材料界面处的固体电解质间膜和电荷转移的两个电阻,这意味着SEI膜的改善和电解质溶液对间相之间的渗透性。通过表面氟化速率提高了速率能力,高达1C的速率,其特征在于,SF-TiO_2(B)表现出大约150mAhg〜(-1)的高放电容量。

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