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Storage of hydrogen and lithium in inorganic nanotubes and nanowires

机译:氢和锂在无机纳米管和纳米线中的存储

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摘要

The search for cleaner and more efficient energy storage and conversion technologies has become an urgent task due to increasing environmental issues and limited energy resources. The aim of energy storage and conversion is to obtain energy with environmental benefit, high efficiency, and low cost (namely, maximum atomic and recycling economy). Progress has been made in the fields of hydrogen storage and rechargeable batteries. The emerging nanotechnology offers great opportunities to improve the performance of existing energy storage systems. Applying nanoscale materials to energy storage offers a higher capacity compared to the bulk counterparts due to the unique properties of nanomaterials such as high surface areas, large surface-to-volume atom ratio, and size-confinement effect. In particular, one-dimensional (1D) inorganic nanostructures like tubes and wires exhibit superior electrochemical characteristics because of the combined advantages of small size and 1D morphology. Hydrogen and lithium can be stored in different 1D nanostructures in various ways, including physical and/or chemical sorption, intercalation, and electrochemical reactions. This review highlights some of the latest progress with the studies of hydrogen and lithium storage in inorganic nanotubes and nanowires such as MoS_2, WS_2, TiS_2, BN, TiO_2, MnO_2, V_2O_5, Fe_2O_3, Co_3O_4, NiO, and SnO_2.
机译:由于越来越多的环境问题和有限的能源资源,寻求更清洁,更高效的能量存储和转换技术已成为当务之急。能量存储和转换的目的是获得具有环境效益,高效率和低成本(即最大的原子经济和循环经济)的能源。在氢存储和可充电电池领域中已经取得了进展。新兴的纳米技术为改善现有储能系统的性能提供了巨大的机会。与纳米材料相比,将纳米材料应用于能量存储可提供更高的容量,这是由于纳米材料的独特特性,例如高表面积,大的表面积与体积的原子比以及尺寸限制效应。特别地,由于小尺寸和1D形态的综合优势,一维(1D)无机纳米结构(如管和线)表现出优异的电化学特性。氢和锂可以各种方式存储在不同的一维纳米结构中,包括物理和/或化学吸附,插层和电化学反应。这篇综述着重介绍了在无机纳米管和纳米线(例如MoS_2,WS_2,TiS_2,BN,TiO_2,MnO_2,V_2O_5,Fe_2O_3,Co_3O_4,NiO和SnO_2)中氢和锂存储研究的最新进展。

著录项

  • 来源
    《Journal of Materials Research 》 |2006年第11期| p.2744-2757| 共14页
  • 作者

    Fangyi Cheng; Jun Chen;

  • 作者单位

    Institute of New Energy Material Chemistry, Nankai University, Tianjin 300071, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学 ;
  • 关键词

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