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由独特的 S 调制配位过渡双金属络合物衍生而来的中空 CoFe 基混合复合材料,用于在碱性条件下通过水分解高效析氧。

Hollow CoFe-based hybrid composites derived from unique S-modulated coordinated transition bimetal complexes for efficient oxygen evolution from water splitting under alkaline conditions.

作者信息

Nam Dukhyun, Lee Geunhyeong, Kim Jooheon

机构信息

School of Chemical Engineering & Materials Science, Chung-Ang University, 84 Heukseok-ro, Dongjak-gu, Seoul, Korea.

Department of Advanced Materials Engineering, Chung-Ang University, Anseong-si, Gyeonggi-do 17546, Republic of Korea.

出版信息

Dalton Trans. 2022 Sep 26;51(37):14250-14259. doi: 10.1039/d2dt02415b.

Abstract

The oxygen evolution reaction (OER) is an important reaction in water splitting. However, the high cost and slow-rate catalysts hinder commercial applications. Although an important process for manufacturing of hollow structures, it is difficult to construct complicated hollow structures with an excellent and regulable shape for multi-component materials. In this study, we demonstrate that sulfur-Co,Fe bimetallic nitrogen carbon hollow composite hybrids (-S-CoFe@NC) can be synthesized by regulating the amount of sulfur and using the hydrothermal method. For OER, 32-S-CoFe@NC exhibits excellent electrocatalytic activity with a low overpotential of 232 mV, which is higher than those of 0-S-CoFe@NC (270 mV), 23-S-CoFe@NC (247 mV), and RuO (243 mV) catalysts at 10 mA cm. In addition, with air as the cathode, a rechargeable Zn-air battery with outstanding long-life cycling stability for 80 hours based on 32-CoFe@NC + Pt/C is proposed. The advanced technique described here supplies a new route for preparing hollow transition bimetal carbon hybrids with an adjustable composite arrangement for electrocatalysis and water splitting.

摘要

析氧反应(OER)是水分解中的一个重要反应。然而,高成本和低速率的催化剂阻碍了其商业应用。尽管制造中空结构是一个重要过程,但对于多组分材料而言,构建具有优异且可调节形状的复杂中空结构却很困难。在本研究中,我们证明了通过调节硫的含量并采用水热法,可以合成硫 - 钴铁双金属氮碳中空复合杂化物(-S-CoFe@NC)。对于析氧反应,32-S-CoFe@NC表现出优异的电催化活性,在10 mA cm时过电位低至232 mV,高于0-S-CoFe@NC(270 mV)、23-S-CoFe@NC(247 mV)和RuO(243 mV)催化剂。此外,以空气作为阴极,基于32-CoFe@NC + Pt/C提出了一种具有出色的80小时长寿命循环稳定性的可充电锌空气电池。这里描述的先进技术为制备具有可调节复合结构的中空过渡双金属碳杂化物用于电催化和水分解提供了一条新途径。

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