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Effect of Si content on structure and electrochemical performance of ternary nanohybrids integrating Si nanoparticles, N-doped carbon shell, and nitrogen-doped graphene

机译:硅含量对集成硅纳米颗粒,氮掺杂碳壳和氮掺杂石墨烯的三元纳米杂化物的结构和电化学性能的影响

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Hybridizing graphene with silicon (Si) is effective in developing high-performance Si-based anodes. However, the effect of Si content on the structure and electrochemical performance of these nanohybrids has not been extensively studied. Herein, a type of ternary Si/NC/NG nanohybrid with varying Si content was synthesized via a scalable, ecofriendly, and facile solution-mixing and carbonization process. In this nanostructure, Si nanoparticles were sheathed with N-doped carbon (NC) and the NC-wrapped Si nanoparticles were confined by nitrogen (N)-doped graphene (NG). The focus of this work was to determine how the Si content in the ternary nanohybrid affects its structure and electrochemical performance. SEM and TEM observations revealed that all Si nanoparticles were embedded in graphene nanosheets at low Si content while some aggregated and bare Si nanoparticles were observed at high Si content. Despite the simple preparation procedure, the ternary nanohybrid with an optimal Si content (83.9 wt%) delivered a high reversible capacity of 1210 mA h g?1 after 100 cycles at 0.5 A g?1, which outperforms most Si-based anodes in lithium-ion batteries (LIBs) reported so far. The findings presented in this paper represent a new criterion for the design of Si-based anodes with optimized electrochemical performance.
机译:石墨烯与硅(Si)的混合可有效开发高性能的基于硅的阳极。然而,尚未广泛研究Si含量对这些纳米杂化物的结构和电化学性能的影响。本文通过可扩展,生态友好,溶液混合和碳化过程合成了一种具有不同Si含量的三元Si / NC / NG纳米杂化体。在该纳米结构中,Si纳米颗粒被N掺杂的碳(NC)包覆,而NC包裹的Si纳米颗粒被氮(N)掺杂的石墨烯(NG)限制。这项工作的重点是确定三元纳米杂化物中的硅含量如何影响其结构和电化学性能。 SEM和TEM观察表明,所有Si纳米颗粒均以低Si含量嵌入石墨烯纳米片中,而在Si含量较高时观察到一些聚集的裸Si纳米颗粒。尽管制备过程很简单,但具有最佳Si含量(83.9 wt%)的三元纳米杂交体在0.5 A的电流下经过100次循环后仍可提供1210 mA hg ?1 的高可逆容量g ?1 ,优于迄今为止报道的锂离子电池(LIB)中大多数基于Si的阳极。本文介绍的发现代表了具有最佳电化学性能的硅基阳极设计的新标准。

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