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首页> 外文期刊>International journal of the Society of Material Engineering for Resources >Hard Carbon/SiOx Composite Active Material Prepared from Phenolic Resin and Rice Husk for Li-ion Battery Negative Electrode
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Hard Carbon/SiOx Composite Active Material Prepared from Phenolic Resin and Rice Husk for Li-ion Battery Negative Electrode

机译:酚醛树脂和稻壳制备的锂离子电池负极硬碳/ SiO x 复合活性材料

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The composite negative electrode active material of Li-ion batteries (LIBs) was fabricated using phenolic resin (PR) and agricultural waste of rice husk (RH). Because silicates were intrinsically composed in RH, the composite of hard carbon (HC) and SiO_(x) (HC/SiO_(x) composite) was readily prepared by carbonizing the mixture of PR and RH. Li-ion insertion and extraction capacity of the HC/SiO_(x) composite was evaluated in a half-cell configuration using Li metal as the counter electrode, in comparison with those of the carbonized RH and the commercial HC. It was revealed the HC/SiO_(x) composite exhibited 30% higher specific capacity of Li-ion insertion/extraction than did the commercial HC. In addition to this, its capacity retention was found to be approximately equal to that of the commercial HC. The performance comparison of the HC/SiO_(x) composite and the carbonized RH suggested that hybridization of HC and SiO_(x) was useful to alleviate the capacity fading of the SiO_(x) part with maintaining the increased specific capacity attributed to the SiO_(x) part. Cost-effective active material for the LIB negative electrode with acceptable performances could be realized by the simple carbonization of the mixture of PR and RH. The produced HC/SiO_(x) composite was promising for vehicle applications requiring excellent cycle performance and high cost effectiveness.
机译:锂离子电池(LIBs)的复合负极活性材料是用酚醛树脂(PR)和稻壳的农业废料(RH)制成的。由于在RH中固有地包含硅酸盐,因此可以通过将PR和RH的混合物碳化而容易地制备硬碳(HC)和SiO_(x)的复合物(HC / SiO_(x)复合物)。与碳化的RH和市售HC相比,使用锂金属作为对电极,在半电池配置中评估了HC / SiO_(x)复合材料的锂离子插入和提取能力。结果表明,HC / SiO_(x)复合材料的锂离子插入/萃取比容量比市售HC高30%。除此之外,发现其容量保持率近似等于商业HC的容量保持率。 HC / SiO_(x)复合材料和碳化RH的性能比较表明,HC和SiO_(x)的杂化有助于减轻SiO_(x)部分的容量衰减,同时保持归因于SiO_的增加的比容量。 (x)部分。通过将PR和RH的混合物简单碳化,可以实现具有可接受性能的具有成本效益的LIB负极活性材料。所生产的HC / SiO_(x)复合材料有望用于要求出色的循环性能和高成本效益的车辆应用。

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