Switchable CO2 electroreduction via engineering active phases of Pd nanoparticles
Gao, DF; Zhou, H; Cai, F; Wang, DN; Hu, YF; Jiang, B; Cai, WB; Chen, XQ; Si, R; Yang, F
刊名NANO RESEARCH
2017
卷号10期号:6页码:2181-2191
关键词Carbon-dioxide Electroreduction Pd Nanoparticles Active Phase Selectivity Fluctuation
ISSN号1998-0124
DOI10.1007/s12274-017-1514-6
文献子类期刊论文
英文摘要Active-phase engineering is regularly utilized to tune the selectivity of metal nanoparticles (NPs) in heterogeneous catalysis. However, the lack of understanding of the active phase in electrocatalysis has hampered the development of efficient catalysts for CO2 electroreduction. Herein, we report the systematic engineering of active phases of Pd NPs, which are exploited to select reaction pathways for CO2 electroreduction. In situ X-ray absorption spectroscopy, in situ attenuated total reflection-infrared spectroscopy, and density functional theory calculations suggest that the formation of a hydrogen-adsorbed Pd surface on a mixture of the a-and a-phases of a palladium-hydride core (alpha+beta PdHx@PdHx) above -0.2 V (vs. a reversible hydrogen electrode) facilitates formate production via the HCOO* intermediate, whereas the formation of a metallic Pd surface on the a-phase Pd hydride core (beta PdHx@Pd) below -0.5 V promotes CO production via the COOH* intermediate. The main product, which is either formate or CO, can be selectively produced with high Faradaic efficiencies (> 90%) and mass activities in the potential window of 0.05 to -0.9 V with scalable application demonstration.
语种英语
WOS记录号WOS:000401320700030
内容类型期刊论文
源URL[http://ir.sinap.ac.cn/handle/331007/27464]  
专题上海应用物理研究所_中科院上海应用物理研究所2011-2017年
推荐引用方式
GB/T 7714
Gao, DF,Zhou, H,Cai, F,et al. Switchable CO2 electroreduction via engineering active phases of Pd nanoparticles[J]. NANO RESEARCH,2017,10(6):2181-2191.
APA Gao, DF.,Zhou, H.,Cai, F.,Wang, DN.,Hu, YF.,...&Bao, XH.(2017).Switchable CO2 electroreduction via engineering active phases of Pd nanoparticles.NANO RESEARCH,10(6),2181-2191.
MLA Gao, DF,et al."Switchable CO2 electroreduction via engineering active phases of Pd nanoparticles".NANO RESEARCH 10.6(2017):2181-2191.
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