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Green energy storage materials: Nanostructured TiO_2 and Sn-based anodes for lithium-ion batteries

机译:绿色储能材料:用于锂离子电池的纳米结构TiO_2和Sn基阳极

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摘要

It is expected that the market dominance of lithium-ion batteries will continue for at least another decade as there are currently no competing alternatives with the versatility of lithium-ion batteries for powering mobile and portable devices; and for buffering the fluctuating supply of intermittent energy sources such as wind and solar. While the pursuit of higher energy density and higher power density materials constitute the bulk of current interest, there is increasing interest in durable active battery materials that can be produced with minimum environmental impact. It is with these considerations that TiO_2- and Sn-based anode materials are most interesting candidates for fulfilling future green energy storage materials. This review will focus on the recent developments of nanostructured TiO_2 and Sn-based anode materials, including rutile, anatase, TiO_2 (B), and coated TiO_2, and pristine SnO_2, and SnO_2/C, Sn(M)/C composites.
机译:预计锂离子电池的市场主导地位将至少持续十年,因为目前尚无可替代的锂离子电池多功能性可为移动和便携式设备供电;用于缓冲间歇性能源(例如风能和太阳能)的波动供应。尽管追求更高的能量密度和更高的功率密度材料构成了当前的主要兴趣,但人们越来越关注可以在对环境造成最小影响的情况下生产的耐用型活性电池材料。出于这些考虑,TiO_2和Sn基负极材料是实现未来绿色储能材料最有趣的候选材料。这项审查将侧重于纳米结构的TiO_2和Sn基阳极材料的最新发展,包括金红石,锐钛矿,TiO_2(B)和涂覆的TiO_2,原始SnO_2,SnO_2 / C,Sn(M)/ C复合材料。

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  • 来源
    《Energy & environmental science》 |2009年第8期|818-837|共20页
  • 作者单位

    Department of Chemical & Biomolecular Engineering, Faculty of Engineering, National University of Singapore, 10 Kent Ridge Crescent, Singapore 119260;

    Beamline Research Division, Pohang Accelerator Laboratory, Pohang, Korea 790-784;

    Department of Chemical & Biomolecular Engineering, Faculty of Engineering, National University of Singapore, 10 Kent Ridge Crescent, Singapore 119260;

    School of Energy Engineering, Ulsan National Institute of Science & Technology, Ulsan, Korea 689-805;

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