乙二醇
材料科学
等离子体子
莲花
纳米技术
化学工程
化学
有机化学
光电子学
工程类
植物
生物
作者
Kewang Zhang,Cheng Wang,Huaming You,Bin Zou,Siyu Guo,Shujin Li,Yukou Du
标识
DOI:10.1016/j.cej.2022.135666
摘要
We herein successfully prepared a sequence of 3D ultrathin lotus-like PdCu nanosheets which showed high-efficiency photoelectronic response performance to EGOR. • The SPR of plasmon Cu-assisted photoelectrocatalysis is studied. • The introduction of Cu effectively modifies the electronic structure of Pd. • The content of Cu plays a key role in enhancing the electrocatalytic performances of PdCu NSs. • The photoelectric response ability of PdCu NSs to EGOR was further advanced with the assistance of visible light. Coupling the unique surface plasmon resonance (SPR) of plasma metals with electrocatalysis is of huge challenge but great significance to advance alcohol oxidation. Herein, we demonstrate the commendable SPR effect of Cu harvesting solar energy to boost the electrocatalytic efficiency of ethylene glycol oxidation reaction (EGOR) over 3D ultrathin lotus-like PdCu nanosheets (NSs). Notably, the well-defined PdCu-2 NSs exhibit the highest mass activity (7547 mA mg −1 ) to EGOR under visible light illumination, which is 1.3 times enhanced versus in dark, as well as outclassing the Pd-homemade NSs and commercial Pd/C catalyst. Meanwhile, the PdCu-2 NSs also show excellent stability in long-term durable tests. Investigations of the correlative mechanism reveal that the enhanced EGOR is mainly attributed to the SPR of Cu promoting the electron transfer from Cu to Pd, modifying the electronic structure of Pd, and facilitating the charge transport in electrochemical reactions, thus strengthening the electrocatalytic ability of Pd. This work sheds light on the SPR of plasma Cu-assisted photoelectrocatalysis to EGOR and provides new avenues to develop novel and high-efficiency photoelectrocatalysts for liquid fuel cells.
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