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低温合成法综述纳米结构锂离子电池材料

A review of nanostructured lithium ion battery materials via low temperature synthesis.

机构信息

Sustainable Energy Technologies Department, Brookhaven National Laboratory, Upton, New York 11973, USA.

出版信息

Recent Pat Nanotechnol. 2013 Jan;7(1):2-12.

Abstract

Nanostructured materials afford us new opportunities to improve the current technology for synthesizing Li ion batteries. Generating nanomaterials with new properties via an inexpensive approach offers a tremendous potential for realizing high performance Li-ion batteries. In this review, I mainly summarize some of the recent progress made, and describe the patents awarded on synthesizing nanostructured cathode materials for these batteries via low temperature wet- chemistry methods. From an economical view, such syntheses, especially hydrothermal synthesis, may offer the opportunities for significantly lowering the cost of manufacturing battery materials, while conferring distinct environmental advantages. Recent advances in in-situ (real time) X-ray diffraction for studying hydrothermal synthesis have great potential for bettering the rational design of advanced lithium-electrode materials. The development of this technique also will be discussed.

摘要

纳米结构材料为我们提供了改进锂离子电池现有技术的新机会。通过廉价的方法生成具有新性能的纳米材料,为实现高性能锂离子电池提供了巨大的潜力。在这篇综述中,我主要总结了一些最近的进展,并描述了通过低温湿化学方法合成这些电池的纳米结构阴极材料的专利。从经济角度来看,这种合成方法,特别是水热合成,可能为显著降低电池材料的制造成本提供机会,同时带来明显的环境优势。利用原位(实时)X 射线衍射研究水热合成的最新进展,为合理设计先进的锂离子电极材料提供了巨大的潜力。这项技术的发展也将进行讨论。

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