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基于多酸框架的钴镍双金属磷化物(CoNiP)修饰隔膜,用于增强多硫化物吸附-催化作用,以实现优异的锂硫电池。

MOF derived cobalt-nickel bimetallic phosphide (CoNiP) modified separator to enhance the polysulfide adsorption-catalysis for superior lithium-sulfur batteries.

机构信息

College of Materials Science and Metallurgy Engineering, Guizhou University, Guiyang 550025, China.

College of Materials Science and Metallurgy Engineering, Guizhou University, Guiyang 550025, China.

出版信息

J Colloid Interface Sci. 2023 Jul;641:942-949. doi: 10.1016/j.jcis.2023.03.083. Epub 2023 Mar 16.

Abstract

Lithium-sulfur batteries (LSBs) have aroused great research interest due to their high theoretical capacity and high energy density. To further develop lithium-sulfur batteries, it has become more and more important to put more efforts in promoting the adsorption and rapid catalytic conversion of lithium polysulfides (LiPSs). Herein, Ni/Co bimetallic phosphides were encapsulated into nitrogen-doped dual carbon conductive network (NiCoP@NC) by annealing and phosphorizing Ni-ZIF-67 precursor at high temperature. Due to their numerous co-adsorption/catalytic sites and high conductivity of carbon skeleton, the encapsulated Ni/Co phosphides particles could significantly enhance the anchoring and catalytic conversion of LiPSs and provide ultrafast channels for Li transport. When used as a modified separator for LSBs, the cells displayed superior performance with an initial capacity of 1083.4 m Ah g at 0.5 C and outstanding cycle stability with a capacity decay rate of only 0.09% per cycle for 300 cycles. Besides, even at high sulfur loading (3.2 mg cm), they still present satisfactory performance. Therefore, this study presents a novel strategy on how to use MOF derived bimetallic phosphides with chemical adsorption and catalytic conversion of polysulfides for high-power advanced lithium-sulfur batteries.

摘要

锂硫电池(LSBs)因其具有高理论容量和高能量密度而引起了极大的研究兴趣。为了进一步开发锂硫电池,越来越有必要投入更多的精力来促进多硫化锂(LiPSs)的吸附和快速催化转化。在此,通过在高温下退火和磷化 Ni-ZIF-67 前体,将镍/钴双金属磷化物封装到氮掺杂双碳导电网络(NiCoP@NC)中。由于其具有众多的共吸附/催化位点和碳骨架的高导电性,封装的 Ni/Co 磷化物颗粒可以显著增强 LiPSs 的锚定和催化转化,并为 Li 传输提供超快通道。当用作 LSBs 的改性隔板时,电池表现出优异的性能,在 0.5 C 时初始容量为 1083.4 mAh g,在 300 次循环中容量衰减率仅为 0.09%/循环,具有出色的循环稳定性。此外,即使在高硫载量(3.2 mg cm)下,它们仍表现出令人满意的性能。因此,本研究提出了一种新策略,即如何使用 MOF 衍生的具有多硫化物化学吸附和催化转化功能的双金属磷化物来制造高功率先进的锂硫电池。

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