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气相中氧化锂超氧离子 LiO2 的稳定性:二聚反应和歧化反应的计算研究。

Stability of lithium superoxide LiO2 in the gas phase: computational study of dimerization and disproportionation reactions.

机构信息

Liox Power, Incorporated, 129 North Hill Avenue, Suite 103, Pasadena, California 91106, USA.

出版信息

J Phys Chem A. 2010 Aug 12;114(31):8165-9. doi: 10.1021/jp1047584.

Abstract

Knowledge of the precise molecular mechanisms during the discharge and recharge processes in the lithium-air battery is critical for achieving desired improvements in specific capacity, current density, and cyclability. The initial oxygen reduction product formed in the presence of Li(+) ions is lithium superoxide LiO(2). In this study, we report the computed structures and thermodynamic parameters of LiO(2) dimerization in the gas phase, which enables us to provide a baseline for the reaction free energy profile of the subsequent disproportionation of (LiO(2))(2) to lithium peroxide Li(2)O(2) and O(2). Our calculations identified several low-lying (LiO(2))(2) dimers, with the singlet bipyramidal structure giving IR bands that are consistent with the characteristic IR vibration frequencies of (LiO(2))(2) in the oxygen matrix at T = 15-40 K. The activation barrier for (LiO(2))(2) = Li(2)O(2)+O(2) is 10.9 kcal/mol at the UCCSD(T)/CBS level (T = 298 K), suggesting that in the gas phase LiO(2) and its aggregates could only be observed at low temperatures.

摘要

在锂空气电池的放电和充电过程中,了解精确的分子机制对于实现所需的比容量、电流密度和循环性能的改善至关重要。在存在 Li(+)离子的情况下形成的初始氧还原产物是过氧化锂 LiO(2)。在这项研究中,我们报告了 LiO(2)在气相中的二聚体结构和热力学参数,这使我们能够为随后的 (LiO(2))(2)歧化反应的自由能轮廓提供基准,生成过氧化锂 Li(2)O(2)和 O(2)。我们的计算确定了几个低能的 (LiO(2))(2)二聚体,其中单线态双锥结构给出的 IR 带与在 T = 15-40 K 的氧基质中 (LiO(2))(2)的特征 IR 振动频率一致。在 UCCSD(T)/CBS 水平(T = 298 K)下,(LiO(2))(2) = Li(2)O(2)+O(2)的活化能垒为 10.9 kcal/mol,这表明在气相中,LiO(2)及其聚集体只能在低温下观察到。

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