氢
Boosting(机器学习)
材料科学
溢出效应
异质结
安培
凝聚态物理
化学
光电子学
物理
计算机科学
热力学
经济
有机化学
电流(流体)
机器学习
微观经济学
作者
Hongru Hao,Yu Zhang,Zhe Wang,Shuo Shen,Lingling Xu,Zhe Lv,Yanqing Shen,Bo Wei
摘要
Realizing fast electron transfer and rapid mass transport in high current density hydrogen evolution reaction (HER) is pivotal and imperative for water electrolysis. Here, we developed Ni/NiMoN Mott-Schottky heterostructures with unique superwettability that can enhance both electron and mass transfer, greatly reducing the energy demand for water splitting. Experimental and density functional theory demonstrate that in situ grown Ni nanoparticles can optimize the dissociation of water molecules from the surface and the adsorption of H*, facilitating the hydrogen spillover process on Ni/NiMoN. The optimized electrode delivers outstanding HER performance with an ultralow overpotential of −231.3 mV at −1000 mA cm−2 and maintains stable operation for 1000 h in alkaline media. An anion-exchange membrane electrolyzer using Ni/NiMoN as cathode can achieve 1000 mA cm−2 at a low voltage of 1.93 V with superstability. Our work paves an efficient way for constructing active and robust Mott-Schottky catalysts toward industrial-level hydrogen production.
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