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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Atomistic Structure and Dynamics of the Solvation Shell Formed by Organic Carbonates around Lithium Ions via Infrared Spectroscopies
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APS -APS March Meeting 2017 - Event - Atomistic Structure and Dynamics of the Solvation Shell Formed by Organic Carbonates around Lithium Ions via Infrared Spectroscopies

机译:APS -APS 2017年3月会议-活动-锂离子光谱周围有机碳酸盐在锂离子周围形成的溶剂化壳的原子结构和动力学

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Lithium-ion batteries have become ubiquitous to the portable energy storage industry, but efficiency issues still remain. Currently, most technological and scientific efforts are focused on the electrodes with little attention on the electrolyte. For example, simple fundamental questions about the lithium ion solvation shell composition in commercially used electrolytes have not been answered. Using a combination of linear and non-linear IR spectroscopies and theoretical calculations, we have carried out a thorough investigation of the solvation structure and dynamics of the lithium ion in various linear and cyclic carbonates at common battery electrolyte concentrations. Our studies show that carbonates coordinate the lithium ion tetrahedrally. They also reveal that linear and cyclic carbonates have contrasting dynamics in which cyclic carbonates present the most ordered structure. Finally, our experiments demonstrate that simple structural modifications in the linear carbonates impact significantly the microscopic interactions of the system. The stark differences in the solvation structure and dynamics among different carbonates reveal previously unknown details about the molecular level picture of these systems.
机译:锂离子电池已成为便携式能量存储行业的无处不在,但效率问题仍然存在。当前,大多数技术和科学努力都集中在电极上,而很少注意电解质。例如,关于商业用电解质中锂离子溶剂化壳组成的简单基本问题尚未得到解答。结合线性和非线性IR光谱学和理论计算,我们对普通电池电解质浓度下各种线性和环状碳酸酯中锂离子的溶剂化结构和动力学进行了深入研究。我们的研究表明,碳酸盐会四面体地协调锂离子。他们还揭示了直链和环状碳酸酯具有相反的动力学,其中环状碳酸酯呈现最有序的结构。最后,我们的实验表明,线性碳酸盐中的简单结构修饰会显着影响系统的微观相互作用。不同碳酸盐之间溶剂化结构和动力学的明显差异揭示了有关这些系统分子水平图的以前未知的细节。

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