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    Please use this identifier to cite or link to this item: https://tkuir.lib.tku.edu.tw/dspace/handle/987654321/124230


    Title: A single-atom library for guided monometallic and concentration-complex multimetallic designs
    Authors: Pong, Way-faung
    Keywords: Catalyst synthesis;Materials chemistry;Materials for energy and catalysis;Structural properties
    Date: 2022-05-23
    Issue Date: 2023-07-06 12:05:27 (UTC+8)
    Abstract: Atomically dispersed single-atom catalysts have the potential to bridge heterogeneous and homogeneous catalysis. Dozens of single-atom catalysts have been developed, and they exhibit notable catalytic activity and selectivity that are not achievable on metal surfaces. Although promising, there is limited knowledge about the boundaries for the monometallic single-atom phase space, not to mention multimetallic phase spaces. Here, single-atom catalysts based on 37 monometallic elements are synthesized using a dissolution-and-carbonization method, characterized and analysed to build the largest reported library of single-atom catalysts. In conjunction with in situ studies, we uncover unified principles on the oxidation state, coordination number, bond length, coordination element and metal loading of single atoms to guide the design of single-atom catalysts with atomically dispersed atoms anchored on N-doped carbon. We utilize the library to open up complex multimetallic phase spaces for single-atom catalysts and demonstrate that there is no fundamental limit on using single-atom anchor sites as structural units to assemble concentration-complex single-atom catalyst materials with up to 12 different elements. Our work offers a single-atom library spanning from monometallic to concentration-complex multimetallic materials for the rational design of single-atom catalysts.
    Relation: Nature Materials 21(6), p.681-688
    DOI: 10.1038/s41563-022-01252-y
    Appears in Collections:[物理學系暨研究所] 期刊論文

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