过电位
化学
法拉第效率
纳米颗粒
电化学
催化作用
粒径
化学工程
无机化学
电极
纳米技术
有机化学
物理化学
材料科学
工程类
作者
Cheonghee Kim,Hyo Sang Jeon,Taedaehyeong Eom,Michael Shincheon Jee,Hyungjun Kim,C. M. Friend,Byoung Koun Min,Yun Jeong Hwang
摘要
Selective electrochemical reduction of CO2 is one of the most sought-after processes because of the potential to convert a harmful greenhouse gas to a useful chemical. We have discovered that immobilized Ag nanoparticles supported on carbon exhibit enhanced Faradaic efficiency and a lower overpotential for selective reduction of CO2 to CO. These electrocatalysts were synthesized directly on the carbon support by a facile one-pot method using a cysteamine anchoring agent resulting in controlled monodispersed particle sizes. These synthesized Ag/C electrodes showed improved activities, specifically decrease of the overpotential by 300 mV at 1 mA/cm(2), and 4-fold enhanced CO Faradaic efficiency at -0.75 V vs RHE with the optimal particle size of 5 nm compared to polycrystalline Ag foil. DFT calculations enlightened that the specific interaction between Ag nanoparticle and the anchoring agents modified the catalyst surface to have a selectively higher affinity to the intermediate COOH over CO, which effectively lowers the overpotential.
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