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采用嵌入SnO的纳米多孔碳的高容量且稳定的全固态锂离子电池。

High capacity and stable all-solid-state Li ion battery using SnO-embedded nanoporous carbon.

作者信息

Notohara Hiroo, Urita Koki, Yamamura Hideyuki, Moriguchi Isamu

机构信息

Graduate School of Engineering, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki-shi, Nagasaki, 852-8521, Japan.

TOYOTA Motor Corporation, 1200 Mishuku, Susono-shi, Shizuoka, 410-1193, Japan.

出版信息

Sci Rep. 2018 Jun 8;8(1):8747. doi: 10.1038/s41598-018-27040-w.

Abstract

Extensive research efforts are devoted to development of high performance all-solid-state lithium ion batteries owing to their potential in not only improving safety but also achieving high stability and high capacity. However, conventional approaches based on a fabrication of highly dense electrode and solid electrolyte layers and their close contact interface is not always applicable to high capacity alloy- and/or conversion-based active materials such as SnO accompanied with large volume change in charging-discharging. The present work demonstrates that SnO-embedded nanoporous carbons without solid electrolyte inside the nanopores are a promising candidate for high capacity and stable anode material of all-solid-state battery, in which the volume change reactions are restricted in the nanopores to keep the constant electrode volume. A prototype all-solid-state full cell consisting of the SnO-based anode and a LiNiCo/MnO-based cathode shows a good performance of 2040 Wh/kg at 268.6 W/kg based on the anode material weight.

摘要

由于高性能全固态锂离子电池不仅在提高安全性方面具有潜力,而且在实现高稳定性和高容量方面也具有潜力,因此人们投入了大量的研究精力来开发这种电池。然而,基于制造高密度电极和固体电解质层及其紧密接触界面的传统方法并不总是适用于高容量的合金基和/或转换基活性材料,如SnO,其在充放电过程中会伴随较大的体积变化。目前的工作表明,纳米孔内没有固体电解质的嵌入SnO的纳米多孔碳是全固态电池高容量和稳定负极材料的一个有前途的候选材料,其中体积变化反应在纳米孔内受到限制,以保持电极体积恒定。一个由基于SnO的负极和基于LiNiCo/MnO的正极组成的全固态原型电池,基于负极材料重量,在268.6W/kg的功率下表现出2040Wh/kg的良好性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/facc/5993792/344e3007d0f9/41598_2018_27040_Fig1_HTML.jpg

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