Ghosh Meena, Vijayakumar Vidyanand, Kurian Maria, Dilwale Swati, Kurungot Sreekumar
Physical and Materials Chemistry Division, CSIR-National Chemical Laboratory, Pune, 411008 Maharashtra, India.
Dalton Trans. 2021 Mar 28;50(12):4237-4243. doi: 10.1039/d0dt04404k. Epub 2021 Mar 10.
Rechargeable batteries consisting of a Zn metal anode and a suitable cathode coupled with a Zn ion-conducting electrolyte are recently emerging as promising energy storage devices for stationary applications. However, the formation of high surface area Zn (HSAZ) architectures on the metallic Zn anode deteriorates their performance upon prolonged cycling. In this work, we demonstrate the application of 1,4,5,8-naphthalenetetracarboxylic dianhydride (NTCDA), an organic compound, as a replacement for the Zn-metal anode enabling the design of a 'rocking-chair'zinc-proton hybrid ion battery. The NTCDA electrode material displays a multi-plateau redox behaviour, delivering a specific discharge capacity of 143 mA h g in the potential window of 1.4 V to 0.3 V vs. Zn|Zn. The detailed electrochemical characterization of NTCDA in various electrolytes (an aqueous solution of 1 M ZnOTF, an aqueous solution of 0.01 M HSO, and an organic electrolyte of 0.5 M ZnOTF/acetonitrile) reveals that the redox processes leading to charge storage involve a contribution from both H and Zn. The performance of NTCDA as an anode is further demonstrated by pairing it with a MnO cathode, and the resulting MnO||NTCDA full-cell (zinc-proton hybrid ion battery) delivers a specific discharge capacity of 41 mA h g (normalized with the total mass-loading of both anode and cathode active materials) with an average operating voltage of 0.80 V.
由锌金属阳极、合适的阴极以及锌离子传导电解质组成的可充电电池,最近正成为用于固定应用的有前景的储能装置。然而,在金属锌阳极上形成高表面积锌(HSAZ)结构会在长时间循环后降低其性能。在这项工作中,我们展示了一种有机化合物1,4,5,8 - 萘四甲酸二酐(NTCDA)作为锌金属阳极替代品的应用,从而能够设计一种“摇椅式”锌 - 质子混合离子电池。NTCDA电极材料表现出多平台氧化还原行为,在相对于Zn|Zn为1.4 V至0.3 V的电位窗口中,其比放电容量为143 mA h g。对NTCDA在各种电解质(1 M ZnOTF水溶液、0.01 M HSO水溶液以及0.5 M ZnOTF/乙腈有机电解质)中的详细电化学表征表明,导致电荷存储的氧化还原过程涉及H和Zn的共同作用。通过将NTCDA与MnO阴极配对,进一步证明了NTCDA作为阳极的性能,由此得到的MnO||NTCDA全电池(锌 - 质子混合离子电池)的比放电容量为41 mA h g(基于阳极和阴极活性材料的总质量负载进行归一化),平均工作电压为0.80 V。