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Synergistic effects of B/S co-doped spongy-like hierarchically porous carbon for a high performance zinc-ion hybrid capacitor

机译:协同效应的B / S co-doped spongy-like分层多孔碳的高性能zinc-ion混合电容器

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Zinc-ion hybrid capacitors (ZIHCs) are regarded as a potential candidate for large-scale energy storage devices. However, the inadequate cathode and the inferior wettability between the electrode and electrolyte hinder the construction of high-performance ZIHCs. Herein, boron (B) and sulfur (S) co-doped spongy-like hierarchically porous carbon (B2S3C) is first proposed as a cathode material for ZIHCs. Here, B doping is favorable for improving the wettability, while S doping contributes to enhancing the electrical properties. In addition, the density functional theory (DFT) results uncover that B and S atoms contribute to reducing the energy barrier between Zn2+ and the cathode, leading to boosted chemical adsorption ability of Zn2+ on the cathode. As a result, the assembled ZIHC based on B2S3C exhibits a high specific capacity of 182.6 mA h g−1 at 0.1 A g−1, an excellent capacity retention of 96.2% after 10 000 cycles and a remarkable energy density of 292.2 W h kg−1 at a power density of 62.2 W kg−1, superior to the previously reported ZIHCs. Due to the flexibility of the assembled electrodes, the solid-state ZIHC can sustain various deformations. This work paves a feasible path for the development of cost-effective and high-performance porous carbon materials.
机译:Zinc-ion混合电容器(ZIHCs)被认为是一个潜在的候选人大规模的能源存储设备。和下级之间的润湿性电极和电解质阻碍建设高性能ZIHCs。硫(S) co-doped spongy-like层级多孔碳(B2S3C)是首次提出的ZIHCs阴极材料。有利于提高润湿性,年代兴奋剂有助于提高电属性。理论(DFT)结果揭示,B和S原子有助于减少之间的能量势垒Zn2 +和阴极,从而推动了化学Zn2 +阴极上的吸附能力。因此,基于B2S3C ZIHC组装马展览比容量高182.6 h在0.1 g−1 g−1,保留一个优秀的能力96.2%的000后周期和一个了不起的能量密度为292.2 W h公斤−1力量密度为62.2 W公斤−1,优于之前报道ZIHCs。固态ZIHC电极,组装的可以维持各种变形。一个可行的发展路径有成本效益的和高性能多孔碳材料。

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