首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A bi-functional metal-free catalyst composed of dual-doped graphene and mesoporous carbon for rechargeable lithium-oxygen batteries
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A bi-functional metal-free catalyst composed of dual-doped graphene and mesoporous carbon for rechargeable lithium-oxygen batteries

机译:一种由双掺杂石墨烯和中孔碳组成的双功能无金属催化剂,用于可充电锂氧电池

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摘要

Mesoporous carbon on nitrogen and sulfur co-doped graphene nanosheets (NSGC) was synthesized and its bi-functional catalytic activity toward oxygen reduction reaction and oxygen evolution reaction was investigated. The NSGC material showed high bi-functional catalytic activity due to the synergistic effect of co-doping of sulfur and nitrogen, as well as the presence of a hierarchical porous structure. The enhanced bi-functional catalytic activity of NSGC facilitated the efficient formation and decomposition of Li2O2 on the air cathode. The lithium-oxygen cell assembled with the NSGC-based air cathode delivered a high initial discharge capacity of 11 431 mA h g(-1) and exhibited good cycling stability. The hybrid structure consisting of mesoporous carbon with co-doped graphene nanosheets can be an effective strategy to improve the round-trip efficiency and cycle life of lithium-oxygen batteries.
机译:合成了氮硫共掺杂石墨烯纳米片(NSGC)上的介孔碳,并研究了其对氧还原反应和析氧反应的双功能催化活性。由于硫和氮共掺杂的协同作用以及分层多孔结构的存在,NSGC材料显示出高的双功能催化活性。 NSGC增强的双功能催化活性促进了Li2O2在空气阴极上的有效形成和分解。与基于NSGC的空气阴极组装的锂氧电池提供了11 431 mA h g(-1)的高初始放电容量,并表现出良好的循环稳定性。由介孔碳与共掺杂石墨烯纳米片组成的杂化结构可以成为提高锂氧电池往返效率和循环寿命的有效策略。

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