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Electrochemical Properties of Anthracene-Based Lithium-SolvatedElectron Solutions

机译:蒽基锂溶剂化的电化学性能电子解决方案

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摘要

The conductivity and open-circuit voltage (OCV) of lithium-solvated electron solutions (LiSESs) based on anthracene in tetrahydrofuran were studied by both experimental measurements and density functional theory calculations with a range-separated functional based on the M06 form and the Solvation Model based on Density (SMD). The OCV was found to decrease with increasing temperature and the ratio of lithium to anthracene. The enthalpy change (ΔH) of LiSESs was the internal energy change of the cell reaction. The conductivity of LiSESs exhibited a weakly metallic-like behavior. The electron transport was facilitated by molecular collisions promoted by the formation of dimeric structures as intermediates. The conductivity of LiSESs at 295.15 K presents positive correlation with the entropy change (ΔS) associated with the variation in the ratio of lithium to poly-aromatic hydrocarbon, including p-terphenyl, anthracene, and triphenylene.
机译:通过实验测量和密度泛函理论计算,研究了基于蒽在四氢呋喃中的锂溶剂化锂溶液(LiSESs)的电导率和开路电压(OCV),基于M06形式和溶剂化模型基于密度(SMD)。发现OCV随着温度的升高和锂与蒽的比例的降低而降低。 LiSESs的焓变(ΔH)是细胞反应的内能变化。 LiSES的电导率表现出类似金属的弱行为。通过以二聚体结构为中间体促进的分子碰撞促进了电子传输。 LiSESs在295.15 K处的电导率与熵变化(ΔS)正相关,熵变与锂与包括对三联苯,蒽和三亚苯基的多芳烃的比例变化相关。

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