阳极
过电位
法拉第效率
材料科学
锑
电池(电)
电镀(地质)
储能
锌
化学工程
纳米技术
光电子学
电化学
化学
冶金
电极
物理
地质学
工程类
量子力学
物理化学
功率(物理)
地球物理学
作者
Xinhua Zheng,Zaichun Liu,Jifei Sun,Ruihao Luo,Kui Xu,Mingyu Si,Ju Kang,Yuan Yuan,Shuang Liu,Touqeer Ahmad,Taoli Jiang,Na Chen,Mingming Wang,Yan Xu,Mingyan Chuai,Zhengxin Zhu,Qia Peng,Yahan Meng,Kai Zhang,Weiping Wang,Wei Chen
标识
DOI:10.1038/s41467-022-35630-6
摘要
Abstract The 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/Sb 2 Zn 3 -heterostructured interface in Zn plating, the Zn anode enables an ultrahigh areal capacity of 200 mAh cm −2 with an overpotential of 112 mV and a Coulombic efficiency of 98.5%. An anode-free Zn-Br 2 battery using the Sb/Sb 2 Zn 3 -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-Br 2 battery in a capacity of 500 mAh exhibits over 400 stable cycles. Further, the Zn-Br 2 battery 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.
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