催化作用
化学
多相催化
氧化还原
反应性(心理学)
纳米技术
光化学
材料科学
有机化学
医学
替代医学
病理
作者
Alexander Adogwa,Ewa Chukwu,Alexander Malaj,Venkata Rohit Punyapu,Owen Chamness,Nicolas Glisson,Bridget Bruce,Sungsik Lee,Michael J. Zachman,David A. Bruce,Rachel B. Getman,O. Thompson Mefford,Ming Yang
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2024-02-28
卷期号:14 (6): 4008-4017
被引量:39
标识
DOI:10.1021/acscatal.3c05989
摘要
As a recent advancement in reaction engineering, magnetic induction heating (MIH) is utilized to initiate the intended reactions by enabling the self-heating of the ferromagnetic catalyst particles. While MIH can be energy-efficient and industrially scalable, its full potential has been underappreciated in catalysis because of the perception that MIH is merely an alternative heating approach. Unexpectedly, we show that the MIH-triggered reaction could go beyond standard thermal catalysis. Specifically, by probing the representative Pt/Fe3O4 catalysts with CO oxidation in both thermal and MIH modes with consistent temperature profiles and catalyst structures, we found that the MIH mode boosts the reactivity more than 25 times by modifying Pt–FeOx interfacial synergies and promoting facile oxidation of the adsorbed carbonyl species by atomic oxygen. As we preliminarily observed, this beneficial MIH catalysis can be translational to other thermal reactions, potentially paving the way to launch MIH catalysis as a distinct reaction category.
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