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首页> 外文期刊>Advanced energy materials >Surface-Plasmon-Assisted Photoelectrochemical Reduction of CO_2 and NO_3~− on Nanostructured Silver Electrodes
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Surface-Plasmon-Assisted Photoelectrochemical Reduction of CO_2 and NO_3~− on Nanostructured Silver Electrodes

机译:纳米结构银电极上的表面等离子体辅助光电化学还原CO_2和NO_3〜-

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Electrochemical reduction of carbon dioxide (CO2) typically suffers from low selectivity and poor reaction rates that necessitate high overpotentials, which impede its possible application for CO2 capture, sequestration, or carbon-based fuel production. New strategies to address these issues include the utilization of photoexcited charge carriers to overcome activation barriers for reactions that produce desirable products. This study demonstrates surface-plasmon-enhanced photoelectrochemical reduction of CO2 and nitrate (NO3-) on silver nanostructured electrodes. The observed photocurrent likely originates from a resonant charge transfer between the photogenerated plasmonic hot electrons and the lowest unoccupied molecular orbital (MO) acceptor energy levels of adsorbed CO2, NO3-, or their reductive intermediates. The observed differences in the resonant effects at the Ag electrode with respect to electrode potential and photon energy for CO2 versus NO3- reduction suggest that plasmonic hot-carriers interact selectively with specific MO acceptor energy levels of adsorbed surface species such as CO2, NO3-, or their reductive intermediates. This unique plasmon-assisted charge generation and transfer mechanism can be used to increase yield, efficiency, and selectivity of various photoelectrochemical processes.
机译:二氧化碳(CO2)的电化学还原通常会遭受选择性低和反应速度慢的问题,这需要高的超电势,这阻碍了其在CO2捕集,封存或碳基燃料生产中的应用。解决这些问题的新策略包括利用光激发的载流子来克服产生理想产物的反应的活化障碍。这项研究表明银纳米结构电极上的表面等离子体增强了光化学还原法,可将CO2和硝酸盐(NO3-)还原。观察到的光电流可能源自光生等离子体热电子与吸附的CO2,NO3-或它们的还原性中间体的最低未占据分子轨道(MO)受体能级之间的共振电荷转移。在Ag电极上观察到的相对于CO2和NO3-还原的电极电位和光子能量的共振效应差异表明,等离子体热载流子与吸附的表面物质(例如CO2,NO3-,或它们的还原中间体。这种独特的等离激元辅助电荷产生和转移机制可用于提高各种光电化学过程的产率,效率和选择性。

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