Self-supported Mo and Zn co-doped CoP nanosheet array electrode for large-current-density hydrogen evolution

被引:0
作者
Zhang, Wei [1 ,2 ]
Xie, Xiu-Yuan [2 ]
Cao, Chang-Sheng [2 ,3 ]
Li, Ya-Qiang [4 ]
Khan, Muhammad Imran [2 ,5 ]
Zhu, Qi-Long [2 ]
机构
[1] Fujian Polytech Normal Univ, Sch Mat & Packaging Engn, Fuzhou 350300, Peoples R China
[2] Chinese Acad Sci, Fujian Inst Res Struct Matter, State Key Lab Struct Chem, Fuzhou 350002, Peoples R China
[3] Fuzhou Univ, Key Lab Adv Carbon Based Funct Mat, Fujian Prov Univ, Fuzhou 350016, Peoples R China
[4] Fuzhou Univ, Inst Mol Engn Plus, Coll Chem, Fuzhou 350116, Peoples R China
[5] Univ Sharjah, Res Inst Sci & Engn RISE, Sharjah 27272, U Arab Emirates
来源
RARE METALS | 2025年
基金
中国国家自然科学基金;
关键词
Electrocatalysis; Transition metal phosphides; Hydrogen evolution reaction; Electronic structure; Nanosheet arrays; EFFICIENT; CARBON;
D O I
10.1007/s12598-025-03427-3
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Transition metal phosphides (TMPs) have emerged as promising alternatives to commercial noble-metal-based electrocatalysts for the hydrogen evolution reaction (HER). However, their electrocatalytic performance is still far from practical application. Herein, a novel self-supported CoP-based electrode (MoZn-CoP/CC) was prepared, in which Mo and Zn co-doped CoP nanosheet arrays are tightly anchored on a carbon cloth (CC) matrix. Remarkably, the as-prepared MoZn-CoP/CC electrode exhibits outstanding HER performance with exceptional pH universality. More importantly, it only requires modest overpotentials to deliver the current densities exceeding 1.0 A cm-2 in both alkaline and acidic media, outperforming the commercial Pt catalyst. Experimental results combined with theoretical analysis reveal that co-doping of Mo and Zn can modulate the electronic structure of CoP, thereby optimizing the adsorption energy of hydrogen and ultimately improving the HER performance. This work provides an effective strategy to tune the electronic properties of TMPs via heteroatom doping for enhancing their electrocatalytic performance. (sic)(sic)(sic)(sic)(sic)(sic)(sic)(TMPs)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(HER)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic),(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic).(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(MoZn-CoP/CC),(sic)(sic)(sic)(sic)(sic)(sic)/(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic),(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)CoP(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic).(sic)(sic)(sic)(sic)MoZn-CoP/CC(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic),(sic)(sic)(sic)(sic)(sic)(sic)pH(sic)(sic)(sic)(sic)(sic).(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic),(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)1.0 A cm-2(sic)(sic)(sic)(sic)(sic)(sic),(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic).(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic),Mo-Zn(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)CoP(sic)(sic)(sic)(sic)(sic),(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic),(sic)(sic)(sic)(sic)(sic)(sic)(sic)HER(sic)(sic)(sic)(sic).(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic)(sic).
引用
收藏
页数:10
相关论文
共 49 条
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