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通过定向冷冻流延成型制备的三维取向硫电极

Three-Dimensionally Aligned Sulfur Electrodes by Directional Freeze Tape Casting.

作者信息

Hwa Yoon, Yi Eongyu, Shen Hao, Sung Younghoon, Kou Jiawei, Chen Kai, Parkinson Dilworth Y, Doeff Marca M, Cairns Elton J

机构信息

Energy Storage and Distributed Resources Division , Lawrence Berkeley National Laboratory , Berkeley , California 94720 , United States.

Department of Chemical and Biomolecular Engineering , University of California , Berkeley , California 94720 , United States.

出版信息

Nano Lett. 2019 Jul 10;19(7):4731-4737. doi: 10.1021/acs.nanolett.9b01805. Epub 2019 Jun 27.

Abstract

Rational design of sulfur electrodes is exceptionally important in enabling a high-performance lithium/sulfur cell. Constructing a continuous pore structure of the sulfur electrode that enables facile lithium ion transport into the electrode and mitigates the reconstruction of sulfur is a key factor for enhancing the electrochemical performance. Here, we report a three-dimensionally (3D) aligned sulfur electrode cast onto conventional aluminum foil by directional freeze tape casting. The 3D aligned sulfur-graphene oxide (S-GO) electrode consisting of few micron thick S-GO layers with 10-20 μm interlayer spacings demonstrates significant improvement in the performance of the Li/S cell. Moreover, the freeze tape cast graphene oxide electrode exhibits homogeneous reconfiguration behavior in the polysulfide catholyte cell tests and demonstrated extended cycling capability with only 4% decay of the specific capacity over 200 cycles. This work emphasizes the critical importance of proper structural design for sulfur-carbonaceous composite electrodes.

摘要

硫电极的合理设计对于实现高性能锂/硫电池极为重要。构建硫电极的连续孔隙结构,使锂离子能够轻松传输到电极中并减轻硫的重构,是提高电化学性能的关键因素。在此,我们报道了一种通过定向冷冻胶带浇铸法在传统铝箔上浇铸的三维(3D)排列硫电极。由厚度为几微米、层间距为10 - 20μm的S - 氧化石墨烯(S - GO)层组成的3D排列硫 - 氧化石墨烯(S - GO)电极在锂/硫电池性能方面有显著提升。此外,冷冻胶带浇铸的氧化石墨烯电极在多硫化物阴极电解液电池测试中表现出均匀的重构行为,并展示出在200次循环中比容量仅衰减4%的延长循环能力。这项工作强调了硫 - 碳质复合电极合理结构设计的至关重要性。

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