开发 Se 量子点@ CoFeOx 复合纳米材料,作为可充电锌-空气电池的高活性、高稳定性阴极材料

IF 4.6 4区 化学 Q2 ELECTROCHEMISTRY
Batteries Pub Date : 2023-11-17 DOI:10.3390/batteries9110561
Donghao Zhang, Yang Wang, Xiaopeng Han, Wenbin Hu
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引用次数: 0

摘要

随着人们对清洁能源的迫切需求,可充电锌空气电池(ZABs)越来越受到关注。据报道,基于贵金属的电催化剂(如商用 Pt/C 和 IrO2)对氧还原反应(ORR)和氧进化反应(OER)具有很高的活性。然而,有限的催化动力学以及贵金属的稀缺仍然阻碍着 ZABs 的实际应用。因此,探索储量丰富的高效 ORR/OER 双功能电催化剂具有重要意义。尽管铁氧化物因其优异的氧化还原性能、较低的毒性、简单的制备方法和天然丰富的储量而被认为是金属氧化物中最有潜力的催化剂,但其较差的导电性和较高的团聚性仍然限制了其发展。在这项工作中,我们报道了一种特殊的硒量子点@ CoFeOx(Se-FeOx-Co)复合材料,它表现出突出的双功能催化特性。此外,基于 Se-FeOx-Co 的 ZAB 实现了令人满意的开路电压(1.46 V)和超过 800 分钟的运行耐久性。这项研究探索了一种制造基于氧化铁的双功能催化剂的有效策略,有助于未来相关材料的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developing a Se Quantum Dots@ CoFeOx Composite Nanomaterial as a Highly Active and Stable Cathode Material for Rechargeable Zinc–Air Batteries
With the urgent demand for clean energy, rechargeable zinc–air batteries (ZABs) are attracting increasing attention. Precious-metal-based electrocatalysts (e.g., commercial Pt/C and IrO2) are reported to be highly active towards the oxygen reduction reaction (ORR) and oxygen evolution reaction (OER). Nevertheless, the limited catalytic kinetics, along with the scarcity of noble metals, still hinder the practical applications of ZABs. Consequently, it is of great importance to explore efficient bifunctional ORR/OER electrocatalysts with abundant reserves. Although iron oxides are considered to have some of the greatest potential as catalysts among the metal oxides, owing to their excellent redox properties, lower toxicity, simple preparation, and natural abundance, their poor electrical conductivity and high agglomeration still limit their development. In this work, we report a special Se quantum dots@ CoFeOx (Se-FeOx-Co) composite material, which exhibits outstanding bifunctional catalytic properties. And the potential gap between ORR and OER is low at 0.87 V. In addition, the ZAB based on Se-FeOx-Co achieves a satisfactory open-circuit voltage (1.46 V) along with an operation durability over 800 min. This research explores an effective strategy to fabricate iron oxide-based bifunctional catalysts, which contributes to the future design of related materials.
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来源期刊
Batteries
Batteries Energy-Energy Engineering and Power Technology
CiteScore
4.00
自引率
15.00%
发文量
217
审稿时长
7 weeks
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