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首页> 外文期刊>Applied Surface Science >Holey nanospheres of amorphous bimetallic phosphide electrodeposited on 3D porous Ni foam for efficient oxygen evolution
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Holey nanospheres of amorphous bimetallic phosphide electrodeposited on 3D porous Ni foam for efficient oxygen evolution

机译:3D多孔镍泡沫泡沫的无定形双金属磷化物的多孔纳米球,高效氧气进化

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摘要

The electrocatalyst with low cost and excellent catalytic performance for oxygen evolution reaction (OER) is indispensable in large-scale water electrolysis for hydrogen generation. Herein, we report an inexpensive and highly efficient OER catalyst, amorphous Ni-Fe-P holey nanospheres, which were in situ grown on 3D porous Ni foam by one-step electrodeposition. The as-prepared Ni-Fe-P/NF shows attractive catalytic performance in alkaline medium with a low overpotential of 156 mV at a 10 mA cm(-2) current density, a Tafel slope of 69 mV dec(-1), and the long-term ( 36 h) durability, which is superior to other well-performed metal-phosphide catalysts reported and the commercial catalyst IrO2. Such remarkable OER catalytic performance can be attributed to the synergism of Ni and Fe elements, the amorphous holey structure, the surface superaerophobicity and self-supportive configuration of the as-prepared Ni-Fe bimetal phosphide.
机译:具有低成本和优异催化性能的电催化剂对于氧气进化反应(OER)是在大规模水电解中不可或缺的氢气产生。在此,我们报告了一种廉价且高效的OER催化剂,无定形的Ni-Fe-P型纳米球,其在三维多孔Ni泡沫上原位在一步电沉积上生长。制备的Ni-Fe-P / NF在碱性介质中显示出含有低过电位的碱性催化性能,在10 mA cm(-2)电流密度下,TAFEL斜率为69mV(-1),长期(> 36小时)耐久性,其优于报道的其他良好的金属磷化催化剂和商业催化剂IRO2。这种显着的oer催化性能可以归因于Ni和Fe元素的协同​​作用,无定形孔结构,表面超脂肪性和制备的镍铁二金属磷化物的磷化物的表面超血管性和自追加构型。

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