催化作用
铂金
兴奋剂
材料科学
纳米颗粒
钴
碳纤维
氧气
电化学
物理化学
化学
纳米技术
电极
冶金
有机化学
复合材料
复合数
光电子学
作者
Bingzhang Lu,Qiming Liu,Forrest Nichols,Rene Mercado,David J. Morris,Ning Li,Peng Zhang,Peng Gao,Yuan Ping,Shaowei Chen
出处
期刊:Research
[American Association for the Advancement of Science]
日期:2020-01-01
卷期号:2020: 9167829-9167829
被引量:26
标识
DOI:10.34133/2020/9167829
摘要
Oxygen reduction reaction (ORR) plays an important role in dictating the performance of various electrochemical energy technologies. As platinum nanoparticles have served as the catalysts of choice towards ORR, minimizing the cost of the catalysts by diminishing the platinum nanoparticle size has become a critical route to advancing the technological development. Herein, first-principle calculations show that carbon-supported Pt 9 clusters represent the threshold domain size, and the ORR activity can be significantly improved by doping of adjacent cobalt atoms. This is confirmed experimentally, where platinum and cobalt are dispersed in nitrogen-doped carbon nanowires in varied forms, single atoms, few-atom clusters, and nanoparticles, depending on the initial feeds. The sample consisting primarily of Pt 2~7 clusters doped with atomic Co species exhibits the best mass activity among the series, with a current density of 4.16 A mg Pt − 1 at +0.85 V vs. RHE that is almost 50 times higher than that of commercial Pt/C.
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