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Pulsed-Field Gradient NMR Self Diffusion and Ionic Conductivity Measurements for Liquid Electrolytes Containing LiBF₄ and Propylene Carbonate

机译:含LiBF 4和碳酸丙烯酯的液体电解质的脉冲场梯度NmR自扩散和离子电导率测量

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摘要

Liquid electrolytes have been prepared using lithium tetrafluoroborate (LiBF₄) and propylene carbonate (PC). Pulsed-field gradient nuclear magnetic resonance (PFG-NMR) measurements were taken for the cation, anion and solvent molecules using lithium (⁷Li), fluorine (¹⁹F) and hydrogen (¹H) nuclei, respectively. It was found that lithium diffusion was slow compared to the much larger fluorinated BF₄ anion likely resulting from a large solvation shell of the lithium. Ionic conductivity and viscosity have also been measured for a range of salt concentrations and temperatures. By comparing the measured conductivity with a ideal predicted conductivity derived from the Nernst-Einstein equation and self diffusion coefficients the degree of ionic association of the anion and cation was determined and was observed to increase with salt concentration and temperature. Using the measured viscosity and self diffusion coefficients the effective radius of each of the species was determined for various salt concentrations.
机译:用四氟硼酸锂(LiBF 3)和碳酸亚丙酯(PC)制备了液体电解质。分别使用锂(⁷Li),氟(⁹F)和氢(¹H)核对阳离子,阴离子和溶剂分子进行了脉冲场梯度核磁共振(PFG-NMR)测量。已发现,与可能由于锂的较大溶剂化壳而导致的更大的氟化BF₄阴离子相比,锂的扩散较慢。还针对一定范围的盐浓度和温度测量了离子电导率和粘度。通过将测得的电导率与从Nernst-Einstein方程和自扩散系数得出的理想预测电导率进行比较,可以确定阴离子和阳离子的离子缔合度,并观察到其随盐浓度和温度的升高而增加。使用测得的粘度和自扩散系数,可以确定各种盐浓度下每种物质的有效半径。

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