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Mesoporous silicon@carbon composites via nanoparticle-seeded dispersion polymerization and their application as lithium-ion battery anode materials

机译:纳米粒子种子分散聚合的介孔硅@碳复合材料及其在锂离子电池负极材料中的应用

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Significant efforts have been devoted to synthesis and characterization of engineered silicon nanostructures able to withstand the large stresses and strains produced by lithium alloying/dealloying reactions during electrochemical cycling. Less attention has been given to ensuring robust connection between silicon and its host structure in the anode. The current work develops a new methodology to create nanocomposites in which silicon nanoparticles are uniformly dispersed in a mesoporous carbon host. The composite is synthesized through copolymerization of acrylonitrile and silicon nanoparticles densely functionalized with vinyl groups, which serve as seeds for free radical dispersion polymerization, followed by carbonization of the PAN coatingetwork. The method yields nanocomposites with high, reversible capacities and stable cycling performance.
机译:已经付出了巨大的努力来合成和表征工程硅纳米结构,其能够承受电化学循环过程中锂合金化/脱合金反应所产生的大应力和应变。很少关注确保阳极之间的硅与其主体结构之间的牢固连接。当前的工作开发了一种新的方法来创建纳米复合材料,其中硅纳米颗粒均匀地分散在介孔碳主体中。该复合材料是通过丙烯腈和被乙烯基密集地官能化的硅纳米颗粒的共聚反应合成的,后者是自由基分散聚合的种子,然后将PAN涂层/网络碳化。该方法产生具有高的可逆容量和稳定的循环性能的纳米复合材料。

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