MXenes as Superexcellent Support for Confining Single Atom: Properties, Synthesis, and Electrocatalytic Applications

MXenes公司 电催化剂 催化作用 材料科学 分解水 共价键 纳米材料 电化学 纳米技术 化学 物理化学 电极 生物化学 有机化学 光催化
作者
Mingming Zhang,Cui Lai,Bisheng Li,Shiyu Liu,Danlian Huang,Fengxiang Xu,Xigui Liu,Lei Qin,Yukui Fu,Ling Li,Huan Yi,Liang Chen
出处
期刊:Small [Wiley]
卷期号:17 (29) 被引量:63
标识
DOI:10.1002/smll.202007113
摘要

Abstract Single atom catalysts (SACs) have shown their noticeable potential and gradually become a new favorite in catalytic field due to the particular selectivity, high catalytic performance, and strong durability. The most important factor in the synthesis of SACs is the selection of appropriate support and formation of metal–support interaction. Among a large number of nanomaterials, MXenes can be utilized as benign supports for fixing SACs because of their expansive specific surface area, regulable bandgap, superior electronic conductivity, and strong mechanical stability. The structure and property of MXenes can be manipulated by changing transition metal elements and surface termination. Here, the uniqueness and superiority of MXenes as superexcellent supports for confining SACs are analyzed from structure and property. The synthetic strategy of MXene‐supported SACs is also summarized, especially emphasizing the immobilization of isolated atom against aggregation by utilizing the formidable metal–support covalent coordination interaction. In addition, the applications of MXene‐supported SACs in electrocatalytic field are highlighted, including hydrogen evolution reaction, oxygen evolution reaction, overall water splitting, oxygen reduction reaction, and nitrogen reduction reaction. Finally, the challenges and prospects are pointed out for the further understanding and practical application of MXene‐supported SACs in electrocatalysis.
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