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首页> 外文期刊>Journal of CO2 Utilization >Cobalt oxide-porous carbon composite derived from CO2 for the enhanced performance of lithium-ion battery
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Cobalt oxide-porous carbon composite derived from CO2 for the enhanced performance of lithium-ion battery

机译:钴氧化物多孔碳复合材料源于CO2,用于增强锂离子电池的性能

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摘要

As the necessity of eco-friendly energy storage devices grows, lithium-ion batteries (LIBs) have emerged as a promising alternative. While metal oxides, due to their high theoretical capacity, have been investigated as anode materials for LIBs, shortcomings such as poor electrical conductivity and segregation of metal oxide are obstacles in actual practice. To solve these problems, this study synthesized cobalt oxide/porous carbon (Co/CPC) composites through a facile one-step thermal process under gaseous carbon dioxide (CO2) atmosphere. As-prepared composites showed cobalt oxide nanoparticles well-integrated with the CO2-derived porous carbon (CPC) and exhibited superior electrochemical performance via a synergistic effect of the cobalt oxide and the CPC. The composites demonstrated a reversible capacity of 1179 mA h.g(-1) at a current density of 1000 mA.g(-1) and stably retained this capacity over 300 cycles. Therefore, Co/CPC composites prepared from CO2 can be economical and eco-friendly anode materials due to their green synthesis route and outstanding electrochemical performance.
机译:随着环保型储能设备的必要性,锂离子电池(LIBS)被出现为有前途的替代方案。虽然金属氧化物由于它们的高理论能力而被研究是Libs的阳极材料,但在实际实践中,导电性差和金属氧化物的隔离等缺点是障碍。为了解决这些问题,本研究通过在气态二氧化碳(CO 2)气氛下通过容易的一步热过程合成钴氧化物/多孔碳(CO / CPC)复合材料。制备的复合材料显示钴氧化物纳米颗粒与CO 2衍生的多孔碳(CPC)良好地集成,通过氧化钴和CPC的协同作用表现出优异的电化学性能。复合材料以1000 mA.g(-1)的电流密度,在1179mA H.G(-1)的可逆容量上显示出可逆容量(-1),并稳定地保留超过300个循环的容量。因此,由于其绿色合成途径和出色的电化学性能,由CO 2制备的CO / CPC复合材料可以是经济型和环保的阳极材料。

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