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用于电化学析氢、柔性锌空气电池和全水分解的MOF衍生CoO@Co/NCNT纳米复合材料

MOF Derived CoO@Co/NCNT Nanocomposite for Electrochemical Hydrogen Evolution, Flexible Zinc-Air Batteries, and Overall Water Splitting.

作者信息

Singh Tarandeep, Das Chayanika, Bothra Neha, Sikdar Nivedita, Das Shubhajit, Pati Swapan K, Maji Tapas Kumar

出版信息

Inorg Chem. 2020 Mar 2;59(5):3160-3170. doi: 10.1021/acs.inorgchem.9b03516. Epub 2020 Feb 13.

Abstract

Toward the goal of clean and sustainable energy source, the development of a trifunctional electrocatalyst is a boon for energy storage and conversion devices such as regenerative fuel cells and metal-air batteries. MOF-derived semiconducting-metallic core-shell electrocatalyst (NCNT = nitrogen-doped carbon nanotube), which was shown to catalyze oxygen reduction reaction (ORR) and oxygen evolution reaction (OER), is also found to be an active electrocatalyst for hydrogen evolution reaction (HER) with a low overpotential of 171 mV. Here, the HER activity of is presented and is shown as highly efficient and robust trifunctional electrocatalyst. The detailed theoretical calculation has found N-center of Co-N moiety to be the H binding active site and thus proves to be active for HER. Further, the ORR and OER bifunctionality of helped in fabricating secondary Zn-air battery with high power density of 135 mW/cm. Also, an all-solid-state flexible and wearable battery with as cathode and electrodeposited Zn on carbon fiber cloth as anode was shown to withstand its performance even under stressed conditions. Finally, the material being trifunctional in nature was used both as an anode and cathode material for the electrolysis of water, which was powered by the Zn-air batteries with as the cathode material. It is believed that the development of a trifunctional catalyst would help in wide commercialization of regenerative fuel cells.

摘要

为了实现清洁和可持续能源的目标,开发一种三功能电催化剂对诸如再生燃料电池和金属空气电池等储能和转换装置来说是一大福音。源自金属有机框架(MOF)的半导体-金属核壳电催化剂(NCNT = 氮掺杂碳纳米管),已被证明能催化氧还原反应(ORR)和析氧反应(OER),同时也被发现是一种用于析氢反应(HER)的活性电催化剂,其过电位低至171 mV。在此,展示了该催化剂的HER活性,并表明其为高效且稳定的三功能电催化剂。详细的理论计算发现Co-N部分的N中心是氢结合活性位点,从而证明该催化剂对HER具有活性。此外,该催化剂的ORR和OER双功能特性有助于制造功率密度高达135 mW/cm² 的二次锌空气电池。而且,一种以该催化剂为阴极、在碳纤维布上电沉积锌作为阳极的全固态柔性可穿戴电池,即使在受压条件下也能保持其性能。最后这种本质上具有三功能的材料被用作水电解的阳极和阴极材料,该水电解由以该催化剂为阴极材料的锌空气电池供电。人们相信,三功能催化剂的开发将有助于再生燃料电池的广泛商业化。

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