首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Electrochemical and Surface-Enhanced Raman Spectroscopic Studies on the Adsorption and Electrooxidation of C_1 Molecules on a Roughened Rh Electrode
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Electrochemical and Surface-Enhanced Raman Spectroscopic Studies on the Adsorption and Electrooxidation of C_1 Molecules on a Roughened Rh Electrode

机译:粗糙表面Rh电极上C_1分子的吸附和电氧化的电化学和表面增强拉曼光谱研究

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摘要

By using the previously developed roughening method for producing SERS-active Rh electrode, and assisted by the highly sensitive confocal microprobe Raman system, we carried out a detailed SERS study on the dissociation and electrooxidation of C_1 molecules on a Rh surface. The SERS spectra obtained in a wide frequency region provide not only the vibrations reflecting the internal bonding of CO (at ca. 2000 cm~(-1)) but also the bonding between CO or O with Rh (at ca. 450 cm~(-1)). A complementary electrochemical study was also performed on the roughened Rh surface in order to correlate the electrochemical and vibrational information. Both electrochemical and SERS studies show that Rh has no discernible activity toward the electrooxidation or dissociation of methanol in acidic solutions. Rh becomes active and its activity increases with the decrease of the solution acidity. For HCHO and HCOOH, the electrooxidation activity of Rh increases with increasing pH. On the basis of the result of the model CO system, discussion on the dissociation or electrooxidation mechanisms was presented for C~1 molecules on Rh.
机译:通过使用先前开发的用于生产SERS活性Rh电极的粗糙化方法,并在高灵敏度的共聚焦微探针拉曼系统的辅助下,我们对Rh表面上C_1分子的解离和电氧化进行了详细的SERS研究。在较宽的频率范围内获得的SERS光谱不仅提供了反映CO内部键合的振动(大约2000 cm〜(-1)),而且还提供了CO或O与Rh之间的键合(大约450 cm〜( -1))。为了使电化学和振动信息相关,还对粗糙的Rh表面进行了补充电化学研究。电化学和SERS研究均表明,Rh对酸性溶液中甲醇的电氧化或离解没有明显的活性。 Rh变得活泼,其活性随溶液酸度的降低而增加。对于HCHO和HCOOH,Rh的电氧化活性随pH值的增加而增加。根据CO模型的结果,讨论了Rh上C〜1分子的离解或电氧化机理。

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