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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Selective conversion of CO into ethanol on Cu(511) surface reconstructed from Cu(pc): Operando studies by electrochemical scanning tunneling microscopy, mass spectrometry, quartz crystal nanobalance, and infrared spectroscopy
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Selective conversion of CO into ethanol on Cu(511) surface reconstructed from Cu(pc): Operando studies by electrochemical scanning tunneling microscopy, mass spectrometry, quartz crystal nanobalance, and infrared spectroscopy

机译:从Cu(PC)重建Cu(511)表面的Cu(511)表面的选择性转化:通过电化学扫描隧道显微镜,质谱,石英晶型和红外光谱研究

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摘要

A polycrystalline copper, surface-terminated by a well-defined (511)-oriented facet, was electrochemically generated by a series of step-wise surface reconstruction and iterations of mild oxidative-reductive processes in 0.1 M KOH. The electrochemical reduction of CO on the resultant stepped surface was investigated by four surface-sensitive operando methodologies: electrochemical scanning tunneling microscopy (STM), electrochemical quartz crystal nanobalance (EQCN), differential electrochemical mass spectrometry (DEMS), and polarization-modulation infrared spectroscopy (PMIRS). The stepped surface catalyzed the facile conversion of CO into ethanol, the exclusive alcohol product at a low overpotential of -1.06 V (SHE) or - 0.3 V (RHE). The chemisorption of CO was found to be a necessary prelude to ethanol production: i.e. the surface coverages, rather than solution concentrations. of CO and its surface-bound intermediates primarily dictate the reaction rates (current densities). Contrary to the expected predominance of undercoordinated step-site reactivity over the coordination chemistry of vicinal surfaces, vibrational spectroscopic evidence reveals the involvement of terrace-bound CO adsorbates during the multi-atomic transformations associated with the production of ethanol. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过良好定义的(511)方面表面终止的多晶铜通过一系列逐步的逐步的表面重建和温和的氧化还原方法在0.1M KOH中电化学产生。通过四个表面敏感的手术器方法研究了所得阶梯表面上的CO的电化学还原:电化学扫描隧道显微镜(STM),电化学石英晶型纳米率(EQCN),差分电化学质谱(DEMS)和偏振调制红外光谱(PMIRS)。阶梯式表面催化了CO进入乙醇的体内转化,该专用醇产物在-1.06V(SHE)或-0.3V(RHE)中的低过电位。发现CO的化学吸附是对乙醇生产的必要前列:即表面覆盖,而不是溶液浓度。 CO及其表面结合的中间体主要决定反应速率(电流密度)。与邻近邻近地表的协调化学的预期级数反应性相反,振动光谱证据揭示了与乙醇产生相关的多原子转化期间露天结合的Co吸附的参与。 (c)2019 Elsevier B.v.保留所有权利。

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