海水
电解
动力学
无定形固体
材料科学
电流密度
电流(流体)
环境科学
化学工程
化学
热力学
海洋学
物理化学
地质学
物理
电极
有机化学
工程类
量子力学
电解质
作者
Yanyan Song,Xiaoyan Zhang,Zhengyi Xiao,Yue Wang,Peng Yi,Minghua Huang,Lixue Zhang
摘要
Rational designing efficient, low-cost and corrosion resistant electrocatalysts is a crucial priority for seawater electrolysis to give impetus to the development of hydrogen energy and carbon neutrality. Herein, an amorphous NiFeP/crystalline Ni3S2 (NiFeP/Ni3S2) heterojunction catalyst is legitimately constructed for seawater electrolysis. Such structure improves the conductivity of amorphous NiFeP and optimizes the electronic structure by keeping the metal active sites in a relatively high valence state. In situ/ex situ experimental and theoretical calculation results reveal that the amorphous/crystal heterostructure accelerates the reconstruction and reaction kinetics of catalysts, reducing the energy barrier for potential-determining step and leading to improved intrinsic activity. The constructed NiFeP/Ni3S2 shows the overpotential of 354 mV to drive current density of 800 mA cm−2 in the alkaline medium. Besides, under 100 mA cm−2, NiFeP/Ni3S2 can run stably for 600 hours in seawater electrolyte without any hypochlorite production, demonstrating its excellent chemical stability and corrosion resistance.
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