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思恩推出超级皮肤:长续航电池的新设计。

Sn Wears Super Skin: A New Design for Long Cycling Batteries.

机构信息

Department of Materials Science and Engineering, CEAS, University of Wisconsin-Milwaukee , Milwaukee, Wisconsin 53211, United States.

出版信息

Nano Lett. 2018 Jan 10;18(1):467-474. doi: 10.1021/acs.nanolett.7b04416. Epub 2017 Dec 22.

Abstract

Searching for new anode alternatives in lieu of graphite for lithium-ion batteries that can deliver better electrochemical performance to meet the emerging energy/power demands in electric vehicles becomes particularly challenging. We report a rationally designed hybrid composite as anode in LIB that exhibits a greatly improved gravimetric capacity of 727 mAh/g with a Coulombic efficiency of >99.8% after 3000 cycles at 1.0 C. A capacity of 662 mAh/g at a high rate of 5.0 C was obtained after impressively long 10 000 cycles. From the 50th to 10 000th cycle under 5.0 C, the capacity retention is >97% with a negligible decay of <0.00026% per cycle. The excellence in electrochemistry is attributed to the efficient stress relax, accommodable space, lack of agglomeration, and solid-electrolyte interphase consuming Li of a delicate composite configuration that is composed of a Sn kernel wearing adjustable TiO "skin".

摘要

在锂离子电池中寻找替代石墨的新型阳极材料,以提供更好的电化学性能来满足电动汽车新兴的能源/动力需求,这变得尤其具有挑战性。我们报告了一种合理设计的混合复合材料作为 LIB 的阳极,在 1.0 C 下经过 3000 次循环后,其比容量高达 727 mAh/g,库仑效率>99.8%。在高倍率 5.0 C 下,经过长达 10000 次循环后,获得了 662 mAh/g 的容量。在 5.0 C 下从第 50 次循环到第 10000 次循环,容量保持率>97%,每循环的衰减可忽略不计,<0.00026%。电化学性能优异归因于有效的应力松弛、可适应的空间、无团聚和固体电解质界面消耗 Li 的精细复合结构,该结构由一个内核 Sn 穿着可调 TiO“皮肤”组成。

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