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Dealloyed nanoporous materials for rechargeable lithium batteries

机译:Dealloyed纳米多孔材料可充电锂电池

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摘要

Dealloying has been recognized as a universal strategy to fabricate various functional electrode materials with open networks, nanoscale ligaments, tunable pore sizes and rich surface chemistry, all of which are very attractive characteristics for rechargeable lithium batteries. In particular, lithium ion insertion/extraction in metal anodes is naturally associated with the alloying/dealloying mechanism. The past decade has witnessed rapid growth of this research field with enormous progress. In this review article, we first summarize the recent development and microstructural regulation of dealloyed materials. Next, we focus on the rational design of nanoporous electrodes for rechargeable lithium batteries and related structure-performance correlations. Finally, some critical issues and perspectives are presented to guide the future development directions of such promising technology for high-energy batteries.
机译:脱合金被认为是普遍的策略来制造各种各样的功能电极材料与开放网络,纳米级韧带,可调孔大小和丰富的表面化学,都是很有吸引力的特征可充电锂电池。自然嵌入/提取金属阳极与合金/脱合金机制。这些研究领域带来巨大的增长的进步。总结最近的发展微观结构的监管dealloyed材料。纳米多孔电极的可充电锂电池电池及相关结构性能的相互关系。角度给出指导未来这样的有前途的发展方向技术,高能电池。

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