Bridging oxidase catalysis and oxygen reduction electrocatalysis by model single-atom catalysts

催化作用 纳米材料基催化剂 组合化学 电催化剂 氧化酶试验 电化学 纳米材料 化学 氧还原反应 多铜氧化酶 纳米技术 材料科学 有机化学 物理化学 漆酶 电极
作者
Xiangyu Lu,Shanshan Gao,Han Lin,Han Tian,Deliang Xu,Jianlin Shi
出处
期刊:National Science Review [Oxford University Press]
卷期号:9 (10) 被引量:36
标识
DOI:10.1093/nsr/nwac022
摘要

Nanocatalysts with enzyme-like catalytic activities, such as oxidase mimics, are extensively used in biomedicine and environmental treatment. Searching for enzyme-like nanomaterials, clarifying the origins of catalytic activity and developing activity assessment methodologies are therefore of great significance. Here, we report that oxidase catalysis and oxygen reduction reaction (ORR) electrocatalysis can be well bridged based on their identical activity origins, which makes facile electrocatalytic ORR activity measurements intrinsically applicable to oxidase-like activity evaluations. Inspired by natural heme-copper oxidases, Cu/Fe-doped single-atom catalysts (SACs) were first synthesized and used as model catalysts. Chromogenic reactions, electrochemical voltammetric measurements and density functional theory calculations further verified the linear relationship between the oxidase-like and ORR catalytic activities of the catalysts; thus, an effective descriptor ([Formula: see text]) is proposed for rapid enzymatic catalyst evaluation. Evidence suggests that the enhanced tumour therapeutic efficacy of SACs is a result of their oxidase-like/ORR activities, which proves that numerous ORR electrocatalysts are promising candidates for oxidase mimics and tumour therapy. The synergistic catalytic effect of the biomimetic heterobinuclear Cu-Fe centres has also been thoroughly probed.
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