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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Strong electronic couple engineering of transition metal phosphides-oxides heterostructures as multifunctional electrocatalyst for hydrogen production
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Strong electronic couple engineering of transition metal phosphides-oxides heterostructures as multifunctional electrocatalyst for hydrogen production

机译:过渡金属磷化物氧化物异质结构的强电子夫妇工程,氢催化剂

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摘要

Rational design of heterogeneous electrocatalysts is an effective approach to synergistically promote hydrogen production for renewable energy conversion. Herein, a selective phosphorization strategy by controlling the only phosphorization of higher activity Ni atoms in precursor to construct Ni2P/MoO2/NF heterostructure nanorods arrays (Ni2P/MoO2/NF HNRs) electrocatalyst is realized. By effective interface construction, the strong electronic coupling effect is induced by spontaneously electron transfer across Ni2P/MoO2 heterointerface, which modulates the electronic structure and enhances intrinsic catalytic activity, leading to outstanding electrocatalytic activities and long-time durability in alkaline electrolyte. The Ni2P/MoO2/NF HNRs present ultralow overpotential of 34 mV at 10 mA.cm(-2) for hydrogen evolution reaction. Impressively, when coupled it for urea-assisted electrolyzer, the potential as low as 1.35 V is needed to achieve 10 mA.cm(-2). Experimental and density functional theory results reveal that the strong electronic coupling effect enhances the synergy effect between Ni2P and MoO2, beneficial for boosting the H-2 production.
机译:非均相电催化剂的合理设计是一种有效的方法来协同促进可再生能量转化的氢气产生。这里,实现了通过控制前体的唯一活性Ni原子的唯一活性Ni原子的选择性磷化律策略构建Ni2P / MOO2 / NF异质结构纳米峰阵列(Ni2P / MOO2 / NF HNR)电催化剂。通过有效的界面结构,通过跨Ni2P / MOO2异化表面自发电子传递诱导强电子耦合效应,其调节电子结构并增强内在催化活性,导致碱性电解质的出色电催化活性和长时间耐久性。 Ni2P / MOO2 / NF HNR在10 mA.CM(-2)下存在34mV的超级环节,用于氢化反应。令人印象深刻,当耦合尿素辅助电解器时,需要低至1.35V的电位达到10 mA.cm(-2)。实验和密度函数理论结果表明,强电子耦合效果提高了Ni2P和MOO2之间的协同效应,有利于提高H-2生产。

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