铂金
催化作用
密度泛函理论
材料科学
氢
化学
星团(航天器)
碳纤维
石墨烯
无机化学
铂纳米粒子
纳米技术
光化学
化学工程
化学物理
计算化学
有机化学
复合材料
工程类
复合数
程序设计语言
计算机科学
作者
Niancai Cheng,Samantha Stambula,Da Wang,Mohammad Norouzi Banis,Jian Liu,Adam Riese,Biwei Xiao,Ruying Li,Tsun-Kong Sham,Limin Liu,Gianluigi A. Botton,Xueliang Sun
摘要
Platinum-based catalysts have been considered the most effective electrocatalysts for the hydrogen evolution reaction in water splitting. However, platinum utilization in these electrocatalysts is extremely low, as the active sites are only located on the surface of the catalyst particles. Downsizing catalyst nanoparticles to single atoms is highly desirable to maximize their efficiency by utilizing nearly all platinum atoms. Here we report on a practical synthesis method to produce isolated single platinum atoms and clusters using the atomic layer deposition technique. The single platinum atom catalysts are investigated for the hydrogen evolution reaction, where they exhibit significantly enhanced catalytic activity (up to 37 times) and high stability in comparison with the state-of-the-art commercial platinum/carbon catalysts. The X-ray absorption fine structure and density functional theory analyses indicate that the partially unoccupied density of states of the platinum atoms' 5d orbitals on the nitrogen-doped graphene are responsible for the excellent performance.
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