Shao Yunqi, Gudla Harish, Brandell Daniel, Zhang Chao
Department of Chemistry-Ångström Laboratory, Uppsala University, Lägerhyddsvägen 1, P.O. Box 538, 75121 Uppsala, Sweden.
J Am Chem Soc. 2022 May 4;144(17):7583-7587. doi: 10.1021/jacs.2c02389. Epub 2022 Apr 21.
The transport coefficients, in particular the transference number, of electrolyte solutions are important design parameters for electrochemical energy storage devices. The recent observation of negative transference numbers in PEO-LiTFSI under certain conditions has generated much discussion about its molecular origins, by both experimental and theoretical means. However, one overlooked factor in these efforts is the importance of the reference frame (RF). This creates a non-negligible gap when comparing experiment and simulation because the fluxes in the experimental measurements of transport coefficients and in the linear response theory used in the molecular dynamics simulation are defined in different RFs. In this work, we show that, by applying a proper RF transformation, a much improved agreement between experimental and simulation results can be achieved. Moreover, it is revealed that the anion mass and the anion-anion correlation, rather than ion aggregates, play a crucial role for the reported negative transference numbers.
电解质溶液的传输系数,特别是迁移数,是电化学储能装置的重要设计参数。最近在某些条件下观察到聚环氧乙烷-双(三氟甲基磺酰)亚胺锂中的负迁移数,引发了通过实验和理论手段对其分子起源的诸多讨论。然而,这些研究中一个被忽视的因素是参考系(RF)的重要性。在比较实验和模拟时,这会产生不可忽略的差距,因为传输系数实验测量中的通量以及分子动力学模拟中使用的线性响应理论中的通量是在不同的参考系中定义的。在这项工作中,我们表明,通过应用适当的参考系变换,可以在实验和模拟结果之间实现显著改善的一致性。此外,研究发现,对于所报道的负迁移数,阴离子质量和阴离子-阴离子相关性而非离子聚集体起着关键作用。