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Bismuth-titanium-silicon-based ternary oxide system: A comprehensive analysis and electrochemical utility

机译:基于铋 - 硅基三元氧化物系统:综合分析和电化学效用

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A novel TiO2-SiO2/Bi2O3 oxide material (TSB) was prepared for a first time via the sol-gel method. The synthesis was performed using titanium(IV) isopropoxide, tetraethoxysilane and bismuth nitrate pentahydrate as oxide precursors, ammonia as hydrolysis promoter and propan-2-ol as solvent. The properties of the synthesized material were comprehensively analyzed, including dispersion characteristics, morphology, crystalline structure, chemical composition and porous structure parameters. Additionally, to confirm the chemical structure and the presence of characteristic surface groups, Fourier transform infrared spectroscopy was applied. The electro-chemical properties of a TiO7-SiO2/Bi2O3 anode, operating in 1M LiPF6 in EC/DMC (ethylene carbonate/dimethyl carbonate), were studied. The key point of the investigation was to demonstrate a potential application of TSB material in a Li-ion cell. Electrodes were analyzed with the use of cyclic voltammetry (CV), galvanostatic charging/discharging tests, and scanning electron microscopical (SEM) evaluations were performed. SEM images of both electrodes after charging/discharging processes showed that they to be covered with a film (electro-chemical SEI formation). The reversible capacity of the TiO2-SiO2/Bi2O3 anode after 20 cycles at a low current rate was close to the theoretical value of 250 mAh g(-1). However, at increasing current rates it decreased to ca. 200 mAh g(-1). The reversibility of the process was close to 95%. Moreover after 100 cycle at 50 mA g(-1) the value was 198 mAh g(-1).
机译:通过溶胶 - 凝胶法制备新的TiO2-SiO 2 / Bi 2 O 3氧化物材料(TSB)。使用钛(IV)异丙醇,四乙氧基硅烷和硝酸铋五水合物作为氧化物前体,氨作为水解促进剂和Propan-2-Ol作为溶剂来进行该合成。综合分析了合成材料的性质,包括分散特征,形态,结晶结构,化学成分和多孔结构参数。另外,为了确认化学结构和特征表面基团的存在,施加傅里叶变换红外光谱。研究了在EC / DMC(碳酸亚乙酯/二甲酯)中的1M LiPF6中操作的TiO7-SiO2 / Bi2O3阳极的电化学性质。研究的关键点是证明在锂离子电池中的TSB材料潜在施加。通过使用循环伏安法(CV),电流静电充电/放电测试和扫描电子显微镜(SEM)评价进行分析电极。充电/放电过程后两个电极的SEM图像表明它们用薄膜(电化学SEI形成)覆盖。在低电流速率下20个循环后的TiO2-SiO2 / Bi2O3阳极的可逆能力接近理论值为250mAhg(-1)。但是,随着电流的增加,它降低到CA. 200 mah g(-1)。该过程的可逆性接近95%。此外,在50mA g(-1)下100次循环后,该值为198mAhg(-1)。

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