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通过MXene、石墨烯和离子液体提高锂硫电池性能:一项密度泛函理论研究

Enhancing Lithium-Sulfur Battery Performance by MXene, Graphene, and Ionic Liquids: A DFT Investigation.

作者信息

Cao Jianghui, Xue Sensen, Zhang Jian, Ren Xuefeng, Gao Liguo, Ma Tingli, Liu Anmin

机构信息

State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Panjin 124221, China.

School of Ocean Science and Technology, Dalian University of Technology, Panjin 124221, China.

出版信息

Molecules. 2023 Dec 19;29(1):2. doi: 10.3390/molecules29010002.

Abstract

The efficacy of lithium-sulfur (Li-S) batteries crucially hinges on the sulfur immobilization process, representing a pivotal avenue for bolstering their operational efficiency and durability. This dissertation primarily tackles the formidable challenge posed by the high solubility of polysulfides in electrolyte solutions. Quantum chemical computations were leveraged to scrutinize the interactions of MXene materials, graphene (Gr) oxide, and ionic liquids with polysulfides, yielding pivotal binding energy metrics. Comparative assessments were conducted with the objective of pinpointing MXene materials, with a specific focus on d-TiC materials, evincing augmented binding energies with polysulfides and ionic liquids demonstrating diminished binding energies. Moreover, a diverse array of Gr oxide materials was evaluated for their adsorption capabilities. Scrutiny of the computational outcomes unveiled an augmentation in the solubility of selectively screened d-TiC MXene and ionic liquids-vis à vis one or more of the five polysulfides. Therefore, the analysis encompasses an in-depth comparative assessment of the stability of polysulfide adsorption by d-TiC MXene materials, Gr oxide materials, and ionic liquids across diverse ranges.

摘要

锂硫(Li-S)电池的效能关键取决于硫固定过程,这是提高其运行效率和耐久性的关键途径。本论文主要应对多硫化物在电解质溶液中高溶解度所带来的巨大挑战。利用量子化学计算来研究MXene材料、氧化石墨烯(Gr)和离子液体与多硫化物的相互作用,得出关键的结合能指标。进行了比较评估,目的是确定MXene材料,特别关注d-TiC材料,其与多硫化物的结合能增加,而离子液体的结合能降低。此外,对多种Gr氧化物材料的吸附能力进行了评估。对计算结果的审查揭示,相对于五种多硫化物中的一种或多种,选择性筛选的d-TiC MXene和离子液体的溶解度有所增加。因此,该分析包括对d-TiC MXene材料、Gr氧化物材料和离子液体在不同范围内吸附多硫化物稳定性的深入比较评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b55/10779824/4a5f9ec74f11/molecules-29-00002-g007.jpg

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