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Accelerated polysulfide conversion on hierarchical porous vanadium-nitrogen-carbon for advanced lithium-sulfur batteries

机译:多硫化加速转换层次多孔vanadium-nitrogen-carbon高级锂硫电池

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With high theoretical specific density, low cost, and non-toxicity, Li-S batteries are regarded as a promising candidate for next-generation energy storage systems. However, the shuttling of soluble Li polysulfides (LiPSs) results in self-discharge and rapid capacity degradation. Herein, nitrogen-doped hierarchical porous carbon with embedded highly dispersed vanadium (v)-N-x sites (V-N-C) is developed as a high-performance Li-S battery cathode for the first time. The metal-organic polymer supramolecule structure formed by the electrostatic/hydrogen bond interaction of chitosan-VO3- strongly stabilizes V to generate a high density of V-N-x/C sites. During the discharge/charge process, the unique V-N-x/C active sites can serve as efficient catalysts to accelerate the redox kinetics of LiPSs, while the hierarchical porous carbon structure of V-N-C benefits the diffusion/transfer of Li+/e(-) and suppresses the shuttling of LiPSs. As a result, the S/V-N-C composite delivers a high specific capacity of 1111.2 mA h g(-1) at 0.5C and maintains 573.6 mA h g(-1) at 5C with a low capacity decay rate of 0.087% per cycle (over 500 cycles at 1C). The rate performance of the developed V-N-C cathode in Li-S batteries is superior to that of most of the reported M-N-C and carbon material/metal compound composite electrodes.
机译:理论比密度高、低成本、和无毒性,Li-S电池被认为是一个有前途的候选人为下一代能源存储系统。李可溶性聚硫化物(嘴唇)结果自放电和快速降解能力。在此,nitrogen-doped分级多孔碳使用嵌入式高度分散的钒(v) n *网站(V-N-C)作为一种高性能的开发首次Li-S电池阴极。有机聚合物超分子结构形成的静电和氢键交互chitosan-VO3——强烈的稳定V来生成一个高密度的V-N-x / C网站。在放电/充电过程,独一无二的V-N-x / C活性位点可以作为高效催化剂加速氧化还原动力学的嘴唇,而分级多孔碳V-N-C结构的好处扩散/转让李+ / e(-)和抑制穿梭的嘴唇。复合材料提供了一个高的特定能力1111.2 mA h g(1)马573.6 0.5摄氏度和维护h g(1)容量衰减率低5度0.087%的周期(超过500周期在1 c)。率发达V-N-C阴极的性能在Li-S电池优越的大部分报告M-N-C和碳/金属材料化合物复合电极。

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