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用于超高倍率储能器件的独立 3D 海绵状纳米纤维电极。

Free-Standing 3D-Sponged Nanofiber Electrodes for Ultrahigh-Rate Energy-Storage Devices.

机构信息

Department of Physics , Chalmers University of Technology , SE41296 Göteborg , Sweden.

CNR-ISC, U.O.S. Sapienza , Piazzale A. Moro 5 , 00185 Roma , Italy.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 10;10(40):34140-34146. doi: 10.1021/acsami.8b09746. Epub 2018 Sep 26.

Abstract

We have designed a self-standing anode built-up from highly conductive 3D-sponged nanofibers, that is, with no current collectors, binders, or additional conductive agents. The small diameter of the fibers combined with an internal spongelike porosity results in short distances for lithium-ion diffusion and 3D pathways that facilitate the electronic conduction. Moreover, functional groups at the fiber surfaces lead to the formation of a stable solid-electrolyte interphase. We demonstrate that this anode enables the operation of Li-cells at specific currents as high as 20 A g (approx. 50C) with excellent cycling stability and an energy density which is >50% higher than what is obtained with a commercial graphite anode.

摘要

我们设计了一种由高导电性 3D 海绵状纳米纤维构成的自支撑阳极,即没有集流器、粘合剂或其他额外的导电剂。纤维的小直径与内部海绵状孔隙率相结合,导致锂离子扩散的距离较短,并且具有三维路径,有利于电子传导。此外,纤维表面的官能团导致形成稳定的固体电解质界面相。我们证明,这种阳极能够以高达 20 A g(约 50C)的特定电流运行锂电池,具有出色的循环稳定性和能量密度,比使用商业石墨阳极获得的能量密度高出>50%。

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