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用炭黑涂层和纳米原纤化纤维素粘结剂修饰锌阳极:实现无枝晶锌锰电池的一种策略。

Modifying the Zn anode with carbon black coating and nanofibrillated cellulose binder: A strategy to realize dendrite-free Zn-MnO batteries.

作者信息

Wang Anran, Zhou Weijun, Huang Aixiang, Chen Minfeng, Chen Jizhang, Tian Qinghua, Xu Junling

机构信息

College of Materials Science and Engineering, Nanjing Forestry University, Nanjing 210037, China.

College of Materials Science and Engineering, Nanjing Forestry University, Nanjing 210037, China; Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, Nanjing Forestry University, Nanjing 210037, China.

出版信息

J Colloid Interface Sci. 2020 Oct 1;577:256-264. doi: 10.1016/j.jcis.2020.05.102. Epub 2020 May 28.

Abstract

Aqueous zinc-ion batteries have received significant attention due to their low cost and high safety. However, the unsatisfactory cycling performances caused by the dendritic growth on the Zn anode limit their practical applications. Herein, we propose to modify the conventional Zn foil anode by using carbon black coating and nanofibrillated cellulose binder. The carbon black can form an electrically conductive network, thus greatly enlarging the electroactive surface area, while the nanofibrillated cellulose can act as an electrolyte reservoir to facilitate charge transports. Thanks to that, the modified anode can significantly eliminate the dendritic growth and side reactions, therefore ensuring excellent interface stability with the electrolyte even at a commercial-level areal capacity of 5 mAh g. With the modified anode, the Zn-MnO battery gives a high capacity retention of 87.4% after 1000 cycles, much higher than that with the unmodified Zn foil (42.6%). This study discloses a facile, scalable, and cost-effective strategy to achieve dendrite-free metal electrodes towards great cyclability.

摘要

水系锌离子电池因其低成本和高安全性而备受关注。然而,锌阳极上的枝晶生长导致的循环性能不理想限制了它们的实际应用。在此,我们提出通过使用炭黑涂层和纳米纤化纤维素粘合剂来修饰传统的锌箔阳极。炭黑可以形成导电网络,从而大大扩大电活性表面积,而纳米纤化纤维素可以作为电解质储存库以促进电荷传输。因此,改性阳极可以显著消除枝晶生长和副反应,从而即使在5 mAh g的商业级面积容量下也能确保与电解质具有优异的界面稳定性。使用改性阳极后,锌-二氧化锰电池在1000次循环后具有87.4%的高容量保持率,远高于未改性锌箔(42.6%)的保持率。本研究揭示了一种简便、可扩展且具有成本效益的策略,以实现具有优异循环性能的无枝晶金属电极。

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