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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Surface-enhanced infrared absorption spectroscopic studies of adsorbed nitrate, nitric oxide, and related compounds 1: Reduction of adsorbed NO on a platinum electrode
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Surface-enhanced infrared absorption spectroscopic studies of adsorbed nitrate, nitric oxide, and related compounds 1: Reduction of adsorbed NO on a platinum electrode

机译:吸附硝酸盐,一氧化氮及相关化合物的表面增强红外吸收光谱研究1:减少铂电极上吸附的NO

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Surface-enhanced infrared absorption spectroscopy (SEIRA) was used to examine the adsorption state of nitrogen monoxide (nitric oxide, NO) and the reduction of the adsorbed species. The SEIRA spectra gave two distinct bands at 1723-1733 and 1575-1607 cm(-1) with an additional weak band at 1656-1676 cm(-1) at 0.20 V, the frequencies of which are slightly dependent on the surface coverage. The former two bands are attributed to the on-top and bridged NO, respectively. While the on-top NO stably remained on the surface in the potential range of 0.05-0.60 V, the bridged NO decreased in its intensity with increasing electrode potential. The reduction of the adsorbed NO obeys first-order kinetics with respect to the adsorbed NO. The rate constants are 2.24 +/- 0.03 and 0.24 +/- 0.09 s(-1) at -0.10 V for the on-top and bridged NO, respectively. Tafel slopes obtained from the potential dependence of the rate constant indicate that the rate-determining step is the first electron-transfer process.
机译:使用表面增强红外吸收光谱(SEIRA)来检查一氧化氮(一氧化氮,NO)的吸附状态和吸附物种的还原。 SEIRA光谱在0.20 V时在1723-1733和1575-1607 cm(-1)处给出了两个不同的带,并在1656-1676 cm(-1)处附加了一个弱带,其频率略微取决于表面覆盖率。前两个频段分别归因于顶部和桥接NO。尽管顶部的NO在0.05-0.60 V的电位范围内稳定地保留在表面上,但桥接的NO的强度却随着电极电位的增加而降低。吸附的NO的还原相对于吸附的NO服从一阶动力学。对于顶置式NO和桥式NO,在-0.10 V时速率常数分别为2.24 +/- 0.03和0.24 +/- 0.09 s(-1)。从速率常数的电势依赖性获得的塔菲尔斜率表明速率确定步骤是第一电子转移过程。

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