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Silicon-Based Nanomaterials for Lithium-Ion Batteries: A Review

机译:锂离子电池硅基纳米材料的研究进展

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摘要

There are growing concerns over the environmental, climate, and health impacts caused by using non-renewable fossil fuels. The utilization of green energy, including solar and wind power, is believed to be one of the most promising alternatives to support more sustainable economic growth. In this regard, lithium-ion batteries (LIBs) can play a critically important role. To further increase the energy and power densities of LIBs, silicon anodes have been intensively explored due to their high capacity, low operation potential, environmental friendliness, and high abundance. The main challenges for the practical implementation of silicon anodes, however, are the huge volume variation during lithiation and delithiation processes and the unstable solid-electrolyte interphase (SEI) films. Recently, significant breakthroughs have been achieved utilizing advanced nanotechnologies in terms of increasing cycle life and enhancing charging rate performance due partially to the excellent mechanical properties of nanomaterials, high surface area, and fast lithium and electron transportation. Here, the most recent advance in the applications of 0D (nanoparticles), 1D (nanowires and nanotubes), and 2D (thin film) silicon nanomaterials in LIBs are summarized. The synthetic routes and electrochemical performance of these Si nanomaterials, and the underlying reaction mechanisms are systematically described.
机译:人们越来越担心使用不可再生的化石燃料对环境,气候和健康的影响。包括太阳能和风能在内的绿色能源的利用被认为是支持更可持续的经济增长的最有希望的替代方法之一。在这方面,锂离子电池(LIB)可以发挥至关重要的作用。为了进一步提高LIB的能量和功率密度,硅阳极由于其高容量,低操作潜力,环境友好性和高丰度而得到了广泛的研究。然而,实际应用硅阳极的主要挑战是在锂化和脱锂过程中体积的巨大变化以及不稳定的固体电解质中间相(SEI)膜。近来,利用先进的纳米技术在延长循环寿命和增强充电速率性能方面取得了重大突破,这在一定程度上是由于纳米材料的优异机械性能,高表面积以及快速的锂和电子传输。在此,总结了LIB中0D(纳米粒子),1D(纳米线和纳米管)和2D(薄膜)硅纳米材料的最新应用进展。系统地描述了这些硅纳米材料的合成路线和电化学性能,以及潜在的反应机理。

著录项

  • 来源
    《Advanced energy materials》 |2014年第1期|1-23|共23页
  • 作者单位

    School of Engineering Brown University Providence RI USA;

    Electrochemical Energy Storage Chemical Sciences and Engineering Division Argonne IL USA;

    Materials Science Technology Division Oak Ridge National Laboratory Oak Ridge TN USA;

    Chemical Sciences and Materials Systems Laboratory General Motors Research and Development Center Warren MI USA;

    Department of Chemistry Georgia Southern University Statesboro USA;

    Electrochemical Energy Storage Chemical Sciences and Engineering Division Argonne IL USA;

    School of Engineering Brown University Providence RI USA;

    Department of Chemistry Georgia Southern University Statesboro USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    anodes; capacity; lithium-ion batteries; nanomaterials; silicon;

    机译:阳极;容量;锂离子电池;纳米材料;硅;

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