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用于高倍率硫基水系锌电池的二维介孔亲锌筛

2D Mesoporous Zincophilic Sieve for High-Rate Sulfur-Based Aqueous Zinc Batteries.

作者信息

Liu Jiahao, Ye Chao, Wu Han, Jaroniec Mietek, Qiao Shi-Zhang

机构信息

School of Chemical Engineering, The University of Adelaide, Adelaide, South Australia 5005, Australia.

Department of Chemistry and Biochemistry & Advanced Materials and Liquid Crystal Institute, Kent State University, Kent, Ohio 44242, United States of America.

出版信息

J Am Chem Soc. 2023 Mar 8;145(9):5384-5392. doi: 10.1021/jacs.2c13540. Epub 2023 Feb 21.

Abstract

Sulfur-based aqueous zinc batteries (SZBs) attract increasing interest due to their integrated high capacity, competitive energy density, and low cost. However, the hardly reported anodic polarization seriously deteriorates the lifespan and energy density of SZBs at a high current density. Here, we develop an integrated acid-assisted confined self-assembly method (ACSA) to elaborate a two-dimensional (2D) mesoporous zincophilic sieve (2DZS) as the kinetic interface. The as-prepared 2DZS interface presents a unique 2D nanosheet morphology with abundant zincophilic sites, hydrophobic properties, and small-sized mesopores. Therefore, the 2DZS interface plays a bifunctional role in reducing the nucleation and plateau overpotential: (a) accelerating the Zn diffusion kinetics through the opened zincophilic channels and (b) inhibiting the kinetic competition of hydrogen evolution and dendrite growth the significant solvation-sheath sieving effect. Therefore, the anodic polarization is reduced to 48 mV at 20 mA cm, and the full-battery polarization is reduced to 42% of an unmodified SZB. As a result, an ultrahigh energy density of 866 Wh kg at 1 A g and a long lifespan of 10,000 cycles at a high rate of 8 A g are achieved.

摘要

基于硫的水系锌电池(SZBs)因其高容量、有竞争力的能量密度和低成本而受到越来越多的关注。然而,鲜有报道的阳极极化在高电流密度下严重降低了SZBs的寿命和能量密度。在此,我们开发了一种集成的酸辅助受限自组装方法(ACSA),以制备二维(2D)介孔亲锌筛(2DZS)作为动力学界面。所制备的2DZS界面呈现出独特的二维纳米片形态,具有丰富的亲锌位点、疏水特性和小尺寸介孔。因此,2DZS界面在降低成核和平台过电位方面发挥着双重作用:(a)通过开放的亲锌通道加速锌的扩散动力学,以及(b)抑制析氢和枝晶生长的动力学竞争——显著的溶剂化鞘筛分效应。因此,在20 mA cm时阳极极化降低到48 mV,全电池极化降低到未改性SZB的42%。结果,在1 A g时实现了866 Wh kg的超高能量密度,在8 A g的高倍率下实现了10000次循环的长寿命。

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