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Atomically Dispersed Copper–Platinum Dual Sites Alloyed with Palladium Nanorings Catalyze the Hydrogen Evolution Reaction
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2017-11-15 12:31:44 , DOI: 10.1002/anie.201709803 Tingting Chao 1 , Xuan Luo 2 , Wenxing Chen 3 , Bin Jiang 2 , Jingjie Ge 1 , Yue Lin 1 , Geng Wu 1 , Xiaoqian Wang 1 , Yanmin Hu 1 , Zhongbin Zhuang 4 , Yuen Wu 1 , Xun Hong 1 , Yadong Li 3
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2017-11-15 12:31:44 , DOI: 10.1002/anie.201709803 Tingting Chao 1 , Xuan Luo 2 , Wenxing Chen 3 , Bin Jiang 2 , Jingjie Ge 1 , Yue Lin 1 , Geng Wu 1 , Xiaoqian Wang 1 , Yanmin Hu 1 , Zhongbin Zhuang 4 , Yuen Wu 1 , Xun Hong 1 , Yadong Li 3
Affiliation
Ring in the new year: Atomically dispersed copper–platinum (Cu-Pt) dual sites alloyed with palladium (Pd) nanorings exhibit excellent performance in the hydrogen evolution reaction. Electrocatalytic activity surpasses that of commercial platinum/carbon (Pt/C) catalysts.
中文翻译:
与钯纳米环合金化的原子分散铜-铂双位点催化氢释放反应
新的一年的戒指:与钯(Pd)纳米环合金化的原子分散的铜-铂(Cu-Pt)双位在氢释放反应中表现出出色的性能。电催化活性超过了商业铂/碳(Pt / C)催化剂。
更新日期:2017-11-16
中文翻译:
与钯纳米环合金化的原子分散铜-铂双位点催化氢释放反应
新的一年的戒指:与钯(Pd)纳米环合金化的原子分散的铜-铂(Cu-Pt)双位在氢释放反应中表现出出色的性能。电催化活性超过了商业铂/碳(Pt / C)催化剂。