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Internally Referenced DOSY-NMR: A Novel Analytical Method in Revealing the Solution Structure of Lithium-Ion Battery Electrolytes

机译:内部引用的DOSY-NMR:一种揭示锂离子电池电解质溶液结构的新型分析方法

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摘要

A novel methodology is reported on the use of internally referenced diffusion-ordered spectroscopy (IR-DOSY) in divulging the solution structure of lithium-ion battery electrolytes. Toluene was utilized as the internal reference for ~(1)H-DOSY analysis due to its exceptionally low donor number and reasonable solubility in various electrolytes. With the introduction of the internal reference, the solvent coordination ratio of different species in the electrolytes can be easily determined by ~(1)H-DOSY or ~(7)Li-DOSY. This new technique was applied to different carbonate electrolytes, and the results were consistent with a Fourier transform infrared (FTIR) analysis. Compared to conventional vibrational spectroscopy, this IR-DOSY technique avoids the complicated deconvolution of the spectrum and allows determination of the solvent coordination ratio of different species in electrolyte systems with two or more organic solvents.
机译:报告了在使用内部参考的扩散有序的光谱(IR-MoSY)在遮蔽锂离子电池电解质的溶液结构中的一种新方法。 由于其特殊的供体数和各种电解质中的合理溶解性,甲苯被用作〜(1)H-MOSY分析的内部参考。 随着内部参考的引入,电解质中不同物种的溶剂配位比可以通过〜(1)H-剂量或〜(7)Li-MoSy来容易地确定。 将该新技术应用于不同的碳酸盐电解质,结果与傅里叶变换红外(FTIR)分析一致。 与传统的振动光谱相比,该IR-MoSY技术避免了光谱的复杂作用,并允许在具有两个或更多个有机溶剂中测定电解质系统中不同物种的溶剂配位比。

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