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首页> 外文期刊>Journal of Raman Spectroscopy: An International Journal for Original Work in All Aspects of Raman Spectroscopy, Including Higher Order Processes, and Also Brillouin- and Rayleigh Scattering >The electrochemical reduction of CO2 on a copper electrode in 1-n-butyl-3-methyl imidazolium tetrafluoroborate (BMI.BF4) monitored by surface-enhanced Raman scattering (SERS)
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The electrochemical reduction of CO2 on a copper electrode in 1-n-butyl-3-methyl imidazolium tetrafluoroborate (BMI.BF4) monitored by surface-enhanced Raman scattering (SERS)

机译:通过表面增强拉曼散射(SERS)监测在1-正丁基-3-甲基咪唑四氟硼酸酯(BMI.BF4)中铜电极上的CO2的电化学还原

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The electrochemical conversion of CO2 into value-added products using room temperature ionic liquids as solvent/electrolyte has been proposed as an alternative tominimize the environmental effects of CO2 emissions. A key issue in the design of electrochemical systems for the reduction of CO2 is the in situ identification of intermediate surface species aswell as reaction products. Copper electrodes, besides being used as cathodes in the electrochemical reduction of CO2, present surface-enhanced Raman scattering (SERS) when properly activated. In this sense, the electrochemical reduction of CO2 over a copper electrode in the room temperature ionic liquids 1-n-butyl-3-methyl imidazolium tetrafluoroborate (BMI.BF4) was investigated by cyclic voltammetry and by in situ SERS. The cyclic voltammetries have shown that the presence of CO2 on the BMI.BF4 anticipates the reduction of BMI+ to the corresponding carbene. Fourier-transform-SERS spectra excited at 1064nm and SERS spectra excited at 632.8nm have shown vibrational signals from adsorbed CO. These SERS results indicated that CO adsorbs on the copper surface at two different surface sites. The observation of a 2275 cm(-1) vibration in the SERS spectra also confirmed the presence of chemically adsorbed CO2. Other products of CO2 reduction in BMI.BF4, besides CO, were identified, including BMI carbene and the BMI-CO2 adduct. The SERS results also suggest that the presence of a thin film of Cu2O on the copper surface anticipates the reduction of CO2 to CO, an important component of syngas. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:已提出使用室温离子液体作为溶剂/电解质将CO2电化学转化为高附加值产品的方法,以尽量减少CO2排放的环境影响。用于减少CO 2的电化学系统设计中的关键问题是原位鉴定中间表面物质以及反应产物。铜电极除了在电化学还原CO2中用作阴极外,在正确激活后还会表现出表面增强拉曼散射(SERS)。从这个意义上讲,通过循环伏安法和原位SERS研究了室温离子液体1-n-丁基-3-甲基咪唑四氟硼酸酯(BMI.BF4)中铜电极上的CO2的电化学还原。循环伏安法表明,BMI.BF4上存在CO2预期BMI +还原为相应的卡宾。在1064nm激发的傅里叶变换SERS光谱和在632.8nm激发的SERS光谱显示了被吸附的CO产生的振动信号。这些SERS结果表明CO在两个不同的表面位置吸附在铜表面上。在SERS光谱中观察到2275 cm(-1)的振动也证实了化学吸附的CO2的存在。除了CO之外,还确定了BMI.BF4的其他CO2还原产物,包括BMI卡宾和BMI-CO2加合物。 SERS结果还表明,在铜表面上存在Cu2O薄膜,预示着CO2还原为CO(合成气的重要组成部分)。版权所有(C)2016 John Wiley&Sons,Ltd.

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