材料科学
镍
铬
铂金
金属
化学工程
纳米技术
冶金
无机化学
催化作用
有机化学
化学
工程类
作者
Meng Fan,Longhao Zhu,Ruopeng Li,Jie Jiang,Yaqiang Li,Youzheng Wu,Yuhao Fan,Penghui Ren,Hao Xu,Dan Wang,Jinqiu Zhang,Maozhong An,Peixia Yang
标识
DOI:10.1002/adfm.202416678
摘要
Abstract Rational construction of platinum (Pt)‐based single‐atom catalysts (SACs) with high utilization of active sites holds promise to achieve superior electrocatalytic alkaline HER performance, which requires the assistance of functional supports. In this work, a novel catalytic configuration is reported, namely, Pt SACs anchored on the nickel‐chromium oxides labeled as Pt SACs‐NiCrO 3 /NF. The mechanism associated with the metal‐support interaction (MSI) for synergy co‐catalysis that empowers efficient HER on Pt SACs‐NiCrO 3 /NF is clarified. Specifically, the modulated electron structure in Pt SACs‐NiCrO 3 manipulates the interface microenvironment, mediating a more free water state, which is beneficial to accelerate front water dissociation behavior on the oxide support. Besides, the homogeneously distributed Pt sites with the created near‐acidic state ensure the subsequent fast proton‐involved reaction. All these determine the comprehensively accelerating HER kinetics. Consequently, Pt SACs‐NiCrO 3 /NF deliverers considerable HER performance, with overpotentials (η 10 /η 100 ) of 23/122 mV, high mass activity of 382.77 mA mg −1 Pt . When serving in an alkaline water‐based anion exchange membrane electrolytic cell (AEMWE), Pt SACs‐NiCrO 3 /NF also presents excellent performance (100 mA cm −2 at the cell voltage of 1.51 V and stable up to 100 h), confirming its good prospect.
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