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Electrode architectures for enhanced lithium ion battery performance.

机译:电极架构可增强锂离子电池性能。

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摘要

Increasing prevalence of portable electronic devices and growing concern over the consumption of fossil fuels have led to a growing demand for more efficient energy storage options. Lithium ion chemistry has grown to dominate the battery market, but still requires improvement to meet the increasing need for smaller, cheaper, better performing batteries. The use of nanomaterials has garnered much attention in recent years as a potential way of improving battery performance while decreasing the size. However, new problems are introduced with these materials such as low packing density and high reactivity with the electrolyte. This research focuses on the development of an electrode architecture using nanomaterials which will decrease lithium ion transport distance while enhancing electrical conductivity within the cell. The proposed architecture consists of a stacked, 2D structure composed of layers of carbon nanotubes and active material particles, and can be applied to both the anode and the cathode. The process also has the advantage of low cost because it can be performed under normal laboratory conditions (e.g. temperature and pressure) and easily adapted to a commercial scale.
机译:便携式电子设备的普及和对化石燃料消耗的日益关注导致对更有效的能量存储选项的需求不断增长。锂离子化学已经占领了电池市场,但仍需要改进,以满足对更小,更便宜,性能更好的电池不断增长的需求。近年来,纳米材料的使用已引起人们的广泛关注,这是一种在减小尺寸的同时提高电池性能的潜在方法。然而,这些材料引入了新的问题,例如低堆积密度和与电解质的高反应性。这项研究集中在使用纳米材料的电极体系结构的开发上,该结构将减少锂离子的传输距离,同时增强电池内的电导率。所提出的体系结构由堆叠的2D结构组成,该结构由碳纳米管和活性材料颗粒层组成,可以应用于阳极和阴极。该方法还具有成本低廉的优点,因为它可以在正常的实验室条件(例如温度和压力)下进行并且易于适应工业规模。

著录项

  • 作者

    Kotz, Sharon Loeffler.;

  • 作者单位

    Northeastern University.;

  • 授予单位 Northeastern University.;
  • 学科 Nanotechnology.;Electrical engineering.;Mechanical engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 113 p.
  • 总页数 113
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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