首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Raman Spectra and Transport Properties of Lithium Perchlorate in Ethylene Carbonate Based Binary Solvent Systems for Lithium Batteries
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Raman Spectra and Transport Properties of Lithium Perchlorate in Ethylene Carbonate Based Binary Solvent Systems for Lithium Batteries

机译:碳酸锂基二元溶剂体系中高氯酸锂的拉曼光谱和传输性质

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摘要

Electrolyte solutions formed by the addition of lithium perchlorate to a binary solvent mixture obtained by mixing ethylene carbonate (EC) with propylene carbonate (PC), diethyl carbonate (DEC), or dimethyl carbonate (DMC) were studied. The Raman spectra, conductivity, and viscosity of the EC based binary solvent electrolytes were measured. The salt concentration was optimized for maximum conductivity. Conductivity increases with increasing lithium perchlorate concentration in the EC/PC/LiC1O↓(4) electrolyte until a maximum of 6.1 KΩ↑(2-1) cm↑(-1) is reached at 0.82 M LiC1O↓(4) (EC/PC/LiC1O↓(4) = 8/8/1). For the optimized salt concentration, the conductivity and viscosity dependence on the percent EC content of each electrolyte was measured at 25℃. The maximum conductivity is observed for the EC/DMC/LiC1O↓(4) electrolyte at about 60% EC. The temperature dependence of conductivity and viscosity in the -30°to 60℃ range was also examined. The spectroscopic evidence for specific Li↑(+) coordination is supported by quantum chemical calculations.
机译:研究了通过将高氯酸锂添加到二元溶剂混合物中形成的电解质溶液,该混合物通过将碳酸亚乙酯(EC)与碳酸亚丙酯(PC),碳酸二乙酯(DEC)或碳酸二甲酯(DMC)混合而获得。测量了基于EC的二元溶剂电解质的拉曼光谱,电导率和粘度。优化盐浓度以实现最大电导率。电导率随着EC / PC / LiC1O↓(4)电解质中高氯酸锂浓度的增加而增加,直到在0.82 M LiC1O↓(4)时最大达到6.1KΩ↑(2-1)cm↑(-1)(EC / PC / LiC1O↓(4)= 8/8/1)。为了获得最佳的盐浓度,在25℃下测量了电导率和粘度对每种电解质百分数EC含量的依赖性。在EC约为60%时,观察到EC / DMC / LiC10↓(4)电解质的最大电导率。在-30°至60℃范围内,还考察了电导率和粘度的温度依赖性。特定的Li↑(+)配位的光谱证据得到量子化学计算的支持。

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