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Co3O4-NP embedded mesoporous carbon rod with enhanced electrocatalytic conversion in lithium-sulfur battery

机译:锂硫电池中电催化转化率提高的Co3O4-NP埋入介孔碳棒

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摘要

Lithium-sulfur battery has been considered to be one of the promising alternatives to the traditional lithium-ion battery due to its high theoretical energy density and saving-cost. However, the sluggish reaction during the decomposition of lithium sulfide results in a low specific capacity and poor cycling stability. Herein Co3O4 nano-particle embedded mesoporous carbon rod (Co3O4@MCR) was prepared through a template method to accommodate sulfur as cathode of lithium-sulfur battery. The resultant composite was characterized by Raman spectra, XRD, TEM, SEM, etc. The electrochemical investigation demonstrated that Co3O4@MCR composite exhibits enhanced electrocatalytic performance in lithium-sulfur battery, which was confirmed by cyclic voltammograms, galvanostatic charge-discharge testing, and study of sulfide oxidation using linear sweep voltammetry. With the current density of 0.2 A/g, the specific discharge capacity can be achieved up to more than 1000 mAh/g after 100 cycles. The enhanced electrocatalytic conversion from Co3O4@MCR leads to a low over-potential, fast lithium-ion kinetics and sulfide oxidation reaction.
机译:锂硫电池由于其高的理论能量密度和节省成本而被认为是传统锂离子电池的有前途的替代品之一。然而,在硫化锂分解过程中反应迟缓导致比容量低和循环稳定性差。本文采用模板法制备了Co3O4纳米颗粒埋入介孔碳棒(Co3O4 @ MCR),以容纳硫作为锂硫电池的阴极。所得复合材料通过拉曼光谱,XRD,TEM,SEM等进行表征。电化学研究表明,Co3O4 @ MCR复合材料在锂硫电池中表现出增强的电催化性能,这通过循环伏安图,恒电流充放电试验和循环电伏特得到证实。线性扫描伏安法研究硫化物的氧化在0.2µA / g的电流密度下,经过100个循环后,比放电容量可以达到1000 mAh / g以上。 Co3O4 @ MCR增强的电催化转化导致低的超电势,快速的锂离子动力学和硫化物氧化反应。

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