首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A superior low-cost amorphous carbon anode made from pitch and lignin for sodium-ion batteries
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A superior low-cost amorphous carbon anode made from pitch and lignin for sodium-ion batteries

机译:一种由沥青和木质素制成的低成本低成本无定形碳阳极,用于钠离子电池

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摘要

Sodium-ion batteries (SIBs) are a promising candidate for grid electricity storage due to their potential low cost. The development of anode materials is a crucial step to promote the commercialization of SIBs, and amorphous carbon materials are likely to be the most promising alternatives among all proposed anode materials. However, the cost of the reported carbon materials is still very high due to the expensive precursors and their low carbon yield. Here, we report an amorphous carbon (AC) material made from low cost pitch. The amorphous carbon material with an amazing high carbon yield of 57% was achieved by utilizing the emulsification interaction between pitch and lignin to suppress the graphitization of pitch during the carbonization. The effects of heat-treatment temperatures and the pitch/lignin mass ratios on the morphology, microstructure and the electrochemical performance of AC were systematically investigated. By optimizing experimental conditions, we achieved one representative AC with a suitable morphology and microstructure, which exhibits promising performances with a high reversible capacity of 254 mA h g(-1), a high initial coulombic efficiency of 82% and excellent cycling stability. This is the first demonstration that the pitch can be successfully applied in fabricating amorphous carbon anode materials for SIBs with superior low cost and high performance.
机译:钠离子电池(SIB)由于其潜在的低成本而成为电网储能的有希望的候选者。阳极材料的开发是促进SIBs商业化的关键步骤,无定形碳材料可能是所有提议的阳极材料中最有希望的替代方法。然而,由于昂贵的前体及其低碳收率,所报道的碳材料的成本仍然很高。在这里,我们报告了一种由低成本沥青制成的无定形碳(AC)材料。通过利用沥青和木质素之间的乳化作用抑制碳化过程中沥青的石墨化,获得了具有惊人的高碳收率的无定形碳材料,其产率为57%。系统地研究了热处理温度和沥青/木质素质量比对AC的形貌,微观结构和电化学性能的影响。通过优化实验条件,我们获得了一种具有适当形态和微观结构的代表性AC,该AC具有254 mA h g(-1)的高可逆容量,82%的高初始库仑效率和出色的循环稳定性,显示出令人鼓舞的性能。这是沥青能够成功地以优异的低成本和高性能成功应用于SIBs非晶碳阳极材料制造的证明。

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