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一种由 Ni-MOF 衍生的氧化石墨烯与 NiS-Ni/C 复合材料及其在锂硫电池隔板涂层中的应用。

A Ni-MOF derived graphene oxide combined NiS-Ni/C composite and its use in the separator coating for lithium sulfur batteries.

机构信息

Institute for Advanced Materials, College of Materials Science and Engineering, Jiangsu University, Zhenjiang 212013, P. R. China.

出版信息

Phys Chem Chem Phys. 2023 Feb 15;25(7):5559-5568. doi: 10.1039/d2cp05580e.

Abstract

Lithium-sulfur batteries (LSBs) are widely regarded as reliable novel secondary batteries due to their low price and high capacity. Nevertheless, the notorious "shuttle effect" limits the commercialization of LSBs. In order to solve this problem, we fabricated a NiS-Ni/C composite through carbonization, vulcanization and hydrothermal reactions by using a Ni-MOF precursor and applied it as a separator modification layer to enhance the electrochemical properties of LSBs. To further increase the conductivity of the material, a small amount of GO was added during the experiment. The prepared material was also used as separator modified coating material to optimize the electrochemical performance of LSBs. The as prepared NiS-Ni/C(GO) composite shows good conductivity and has a superior porous structure and abundant active sites. Lithium polysulfides (LPs) can be physically confined and chemically adsorbed, what is more, the Ni and NiS active sites enable fast conversion of LPs which further optimizes the rate performance. From the cycle performance measurement, the initial discharge specific capacity of the NiS-Ni/C(GO) modified separator battery is found to be 1263.4, 1181.5, 1090.6, and 840.3 mA h g at 0.05, 0.1, 0.3 and 0.5C, respectively. After 400 charge/discharge cycles at 0.5C, the capacity remains at 483.6mA h g with a capacity retention ratio of 57.56%.

摘要

锂硫电池(LSBs)因其价格低廉、容量高而被广泛认为是可靠的新型二次电池。然而,臭名昭著的“穿梭效应”限制了 LSBs 的商业化。为了解决这个问题,我们通过碳化、硫化和水热反应,使用 Ni-MOF 前体制备了 NiS-Ni/C 复合材料,并将其用作隔板改性层,以提高 LSBs 的电化学性能。为了进一步提高材料的导电性,实验中添加了少量 GO。所制备的材料也被用作隔板改性涂层材料,以优化 LSBs 的电化学性能。所制备的 NiS-Ni/C(GO)复合材料具有良好的导电性,具有优越的多孔结构和丰富的活性位。多硫化物(LPs)可以被物理限制和化学吸附,更重要的是,Ni 和 NiS 活性位可以使 LPs 快速转化,从而进一步优化倍率性能。从循环性能测试来看,NiS-Ni/C(GO)修饰隔板电池的初始放电比容量分别为 0.05、0.1、0.3 和 0.5C 时为 1263.4、1181.5、1090.6 和 840.3mA h g。在 0.5C 下经过 400 次充放电循环后,容量保持在 483.6mA h g,容量保持率为 57.56%。

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