2020
DOI: 10.1002/chem.202004267
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Rational Design and Controlled Synthesis of V‐Doped Ni3S2/NixPy Heterostructured Nanosheets for the Hydrogen Evolution Reaction

Abstract: Rational construction of high‐efficiency and low‐cost catalysts is one of the most promising ways to produce hydrogen but remains a huge challenge. Herein, interface engineering and heteroatom doping were used to synthesize V‐doped sulfide/phosphide heterostructures on nickel foam (V‐Ni3S2/NixPy/NF) by phosphating treatment at low temperature. The incorporation of V can adjust the electronic structure of Ni3S2, expose more active sites, and protect the 3D structure of Ni foam from damage. Meanwhile, the hetero… Show more

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Cited by 9 publications
(4 citation statements)
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References 61 publications
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“…Therefore, the real catalyst after the evolution of the HER is V–NiOOH/Ni­(OH) 2 @V–Ni 3 S 2 /NF. As reported by previous works, , the increased V doping in the catalyst can improve the electronic structure in the electrode and boost the free carrier density near the Fermi level, promoting the HER catalytic capacity.…”
Section: Results and Discussionsupporting
confidence: 56%
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“…Therefore, the real catalyst after the evolution of the HER is V–NiOOH/Ni­(OH) 2 @V–Ni 3 S 2 /NF. As reported by previous works, , the increased V doping in the catalyst can improve the electronic structure in the electrode and boost the free carrier density near the Fermi level, promoting the HER catalytic capacity.…”
Section: Results and Discussionsupporting
confidence: 56%
“…Therefore, the real catalyst after the evolution of the HER is V−NiOOH/Ni(OH) 2 @V−Ni 3 S 2 /NF. As reported by previous works, 6,7 the increased V doping in the catalyst can improve the electronic structure in the electrode and boost the free carrier density near the Fermi level, promoting the HER catalytic capacity. XPS analysis was employed for the sake of detecting the variation of chemical states of elements in Ni(OH) 2 @V− Ni 3 S 2 /NF after the evolution of the OER and HER (Figure 6).…”
Section: ■ Experimental Sectionsupporting
confidence: 55%
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