Constructing robust heterostructured interface for anode-free zinc batteries with ultrahigh capacities

Author:

Zheng Xinhua,Liu ZaichunORCID,Sun Jifei,Luo Ruihao,Xu Kui,Si Mingyu,Kang Ju,Yuan Yuan,Liu Shuang,Ahmad Touqeer,Jiang Taoli,Chen Na,Wang Mingming,Xu Yan,Chuai Mingyan,Zhu Zhengxin,Peng Qia,Meng Yahan,Zhang Kai,Wang Weiping,Chen WeiORCID

Abstract

AbstractThe development of Zn-free anodes to inhibit Zn dendrite formation and modulate high-capacity Zn batteries is highly applauded yet very challenging. Here, we design a robust two-dimensional antimony/antimony-zinc alloy heterostructured interface to regulate Zn plating. Benefiting from the stronger adsorption and homogeneous electric field distribution of the Sb/Sb2Zn3-heterostructured interface in Zn plating, the Zn anode enables an ultrahigh areal capacity of 200 mAh cm−2with an overpotential of 112 mV and a Coulombic efficiency of 98.5%. An anode-free Zn-Br2battery using the Sb/Sb2Zn3-heterostructured interface@Cu anode shows an attractive energy density of 274 Wh kg−1 with a practical pouch cell energy density of 62 Wh kg−1. The scaled-up Zn-Br2battery in a capacity of 500 mAh exhibits over 400 stable cycles. Further, the Zn-Br2battery module in an energy of 9 Wh (6 V, 1.5 Ah) is integrated with a photovoltaic panel to demonstrate the practical renewable energy storage capabilities. Our superior anode-free Zn batteries enabled by the heterostructured interface enlighten an arena towards large-scale energy storage applications.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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