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首页> 外文期刊>ChemElectroChem >Highly Stabilized Zinc-Air Batteries Based on Nanostructured Co3O4 Composites as Efficient Bifunctional Electrocatalyst
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Highly Stabilized Zinc-Air Batteries Based on Nanostructured Co3O4 Composites as Efficient Bifunctional Electrocatalyst

机译:基于纳米结构CO3O4复合材料的高度稳定的锌 - 空气电池作为高效双官能电催化剂

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Zinc-air batteries are expected to be ideal energy storage devices, showing features of high energy density, economic viability, and safety. To design such a system, it is necessary to develop active and durable electrocatalysts to catalyze the slow oxygen reduction reaction (ORR) during discharging and the oxygen evolution reaction (OER) during charging. In this study, a composite bifunctional catalyst (Co3O4@CNT@MC-200) for use in zinc-air batteries is prepared through a simple sol-gel method, which combines Co3O4 with carbon nanotubes (CNTs) and mesoporous carbon (MC). Benefiting from its large specific surface area and, thus, a multitude of active sites, the Co3O4@CNT@MC-200 composite bifunctional electrocatalyst shows excellent ORR performance in 0.1 M KOH, resulting in a half-wave potential (E1/2) of 0.72 V and limiting diffusion current of 4.6 mAcm(-2). In zinc-air battery tests, a high discharge peak power density of 267 mW cm(-2) and robust lifetime of 8700 min without attenuation is observed. Moreover, the physical properties of the reported catalyst were characterized. This study allows us to envisage the design of highly efficient composite electrocatalysts for zinc-air batteries and a variety of other energy applications.
机译:预计锌 - 空气电池将成为理想的储能设备,显示出高能量密度,经济可行性和安全性的特征。为了设计这样的系统,有必要在充电期间开发活性和耐用的电催化剂以催化慢氧还原反应(ORR)和氧气进化反应(OER)。在该研究中,通过简单的溶胶 - 凝胶法制备用于锌 - 空气电池的复合双官能催化剂(CO3O4 @ CNT @ MC-200),其将CO3O4与碳纳米管(CNT)和中孔碳(MC)组合。从其大的比表面积受益,因此,CO3O4 @ CNT @ MC-200复合双功能电催化剂在0.1M KOH中显示出优异的ORR性能,导致半波电位(E1 / 2) 0.72 V并限制4.6 macm(-2)的扩散电流。在锌 - 空气电池测试中,高放电峰值功率密度为267mW cm(-2),并且在不衰减的情况下为8700分钟的鲁棒寿命。此外,表征了所报道的催化剂的物理性质。该研究使我们能够设想为锌空气电池和各种其他能源应用的高效复合电催化剂的设计。

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