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二维亚苯基:一种用于锂硫电池的有前景的锚定材料。

Two-dimensional biphenylene: a promising anchoring material for lithium-sulfur batteries.

作者信息

Al-Jayyousi Hiba Khaled, Sajjad Muhammad, Liao Kin, Singh Nirpendra

机构信息

Department of Mechanical Engineering, Khalifa University of Science and Technology, 127788, Abu Dhabi, United Arab Emirates.

Department of Physics, Khalifa University of Science and Technology, 127788, Abu Dhabi, United Arab Emirates.

出版信息

Sci Rep. 2022 Mar 17;12(1):4653. doi: 10.1038/s41598-022-08478-5.

Abstract

Trapping lithium polysulfides (LiPSs) on a material effectively suppresses the shuttle effect and enhances the cycling stability of Li-S batteries. For the first time, we advocate a recently synthesized two-dimensional material, biphenylene, as an anchoring material for the lithium-sulfur battery. The density functional theory calculations show that LiPSs bind with pristine biphenylene insubstantially with binding energy ranging from -0.21 eV to -1.22 eV. However, defect engineering through a single C atom vacancy significantly improves the binding strength (binding energy in the range -1.07 to -4.11 eV). The Bader analysis reveals that LiPSs and S8 clusters donate the charge (ranging from -0.05 e to -1.12 e) to the biphenylene sheet. The binding energy of LiPSs with electrolytes is smaller than those with the defective biphenylene sheet, which provides its potential as an anchoring material. Compared with other reported two-dimensional materials such as graphene, MXenes, and phosphorene, the biphenylene sheet exhibits higher binding energies with the polysulfides. Our study deepens the fundamental understanding and shows that the biphenylene sheet is an excellent anchoring material for lithium-sulfur batteries for suppressing the shuttle effect because of its superior conductivity, porosity, and strong anchoring ability.

摘要

在材料上捕获多硫化锂(LiPSs)可有效抑制穿梭效应并提高锂硫电池的循环稳定性。我们首次倡导将最近合成的二维材料联苯作为锂硫电池的锚定材料。密度泛函理论计算表明,LiPSs与原始联苯的结合很弱,结合能在-0.21 eV至-1.22 eV范围内。然而,通过单个C原子空位进行缺陷工程可显著提高结合强度(结合能在-1.07至-4.11 eV范围内)。巴德分析表明,LiPSs和S8簇向联苯片层提供电荷(范围从-0.05 e到-1.12 e)。LiPSs与电解质的结合能小于与缺陷联苯片层的结合能,这表明其作为锚定材料的潜力。与其他已报道的二维材料如石墨烯、MXenes和磷烯相比,联苯片层与多硫化物表现出更高的结合能。我们的研究加深了基本认识,并表明联苯片层因其优异的导电性、孔隙率和强锚定能力,是用于抑制穿梭效应的锂硫电池的优良锚定材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2498/8931010/2c9d6a64a66f/41598_2022_8478_Fig1_HTML.jpg

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