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Biomass-Derived Oxygen and Nitrogen Co-Doped Porous Carbon with Hierarchical Architecture as Sulfur Hosts for High-Performance Lithium/Sulfur Batteries

机译:生物质衍生的氧和氮共掺杂多孔碳,具有多层体系结构,可作为高性能锂/硫电池的硫基质

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In this work, a facile strategy to synthesize oxygen and nitrogen co-doped porous carbon (ONPC) is reported by one-step pyrolysis of waste coffee grounds. As-prepared ONPC possesses highly rich micro/mesopores as well as abundant oxygen and nitrogen co-doping, which is applied to sulfur hosts as lithium/sulfur batteries?¢???? appropriate cathodes. In battery testing, the sulfur/oxygen and nitrogen co-doped porous carbon (S/ONPC) composite materials reveal a high initial capacity of 1150 mAh???·g ?¢????1 as well as a reversible capacity of 613 mAh???·g ?¢????1 after the 100th cycle at 0.2 C. Furthermore, when current density increases to 1 C, a discharge capacity of 331 mAh???·g ?¢????1 is still attainable. Due to the hierarchical porous framework and oxygenitrogen co-doping, the S/ONPC composite exhibits a high utilization of sulfur and good electrochemical performance via the immobilization of the polysulfides through strong chemical binding.
机译:在这项工作中,据报导通过废咖啡渣的一步热解来合成氧和氮共掺杂的多孔碳(ONPC)的简便策略。制备的ONPC具有高度丰富的微孔/中孔以及丰富的氧和氮共掺杂,可作为锂/硫电池应用于硫主体。合适的阴极。在电池测试中,硫/氧和氮共掺杂的多孔碳(S / ONPC)复合材料的初始容量为1150 mAh···g·Ω···η1,可逆容量为613 mAh··g·········································································································································································································································································仍然可以实现。由于分层的多孔骨架和氧/氮共掺杂,S / ONPC复合材料通过牢固的化学键合固定了多硫化物,从而具有较高的硫利用率和良好的电化学性能。

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