Surface Interactive Assembly of Ruthenium Based Janus Bimetallic Nanoparticles With Active Dual‐Function Sites for Efficient Use in CO2 Utilization
作者:Heesu Kim, Seung Jun Lee, Boseok Seo, Min Xu, Mane Rasika, Chanmin Lee, John T. S. Irvine, Minkyu Kim, Yukwon Jeon · 发表于:Advanced Functional Materials · 年份:2025 · DOI:10.1002/adfm.202418874 · 被引用次数:6 · 研究领域:Catalytic Processes in Materials Science、Catalysts for Methane Reforming、Catalysis and Oxidation Reactions
Abstract Noble bimetallic nanoparticles (NPs) are nowadays essential in various applications, like CO 2 utilization by dry reforming of methane (DRM), due to their unique and potential properties. A synthesis method for Ru based Janus‐structured NPs is presented via surface interactive assembly of deposited Ru and emerged Ni species from carefully tailored perovskite oxide support. As noble‐metals typically result in the alloy, an exclusive formation mechanism is introduced by utilizing Ru energetically favorable for the Janus phase by lower ground state energy from interactions between the strongly embedded cluster and perovskite surface. Consequently, noticeable Janus NPs, controllable in size and composition with active configuration by dual‐function sites and interface strains, are well‐produced with high distribution. DRM performance highly exceeds conventional Ru over 5 times in TOFs for both CO 2 and CH 4 with improved stability maintaining H 2 /CO for 100 h without sintering at harsh reaction conditions, which comprehensively exhibits distinct advantages over recent works. Fundamental studies indicate combined electronic d‐band structures proving distinctive CO 2 dissociation and CH 4 activation, involving efficient dehydrogenation and CO production via surface oxygenation, considerably suppresses coking. This approach presents a potential avenue to surmount constraints on designing bimetallic NPs in any structured oxide systems for effective materials in various low ...