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Infrared reflection absorption spectroscopy of carbon monoxide adsorbed on Pd(S)-[n(111)x(111)] and Pd(S)-[n(100)x(111)] electrodes

机译:吸附在Pd(S)-[n(111)x(111)]和Pd(S)-[n(100)x(111)]电极上的一氧化碳的红外反射吸收光谱

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摘要

The binding positions (terraces, steps) and sites (on-top, bridge-bonded, threefold) of adsorbed CO have been studied on Pd(S)-[n(1 11) x (111)] (n = 2, 3, 5, 9, 20, infinity) and Pd(S)-[n(100) X (111)] (n = 2, 5, 9, infinity) electrodes in 0.1 M HClO4 saturated with CO using infrared reflection absorption spectroscopy (IRAS). The band of threefold CO is observed around 1950 cm(-1) on Pd(S)-[n(111) x (111)] electrodes with terrace atomic rows n >= 5. The band intensity is enhanced with the increase of the terrace width; threefold CO is adsorbed on the terrace of Pd(S)-[n(111) x (111)] series. Threefold CO is not found on Pd(S)-[n(100) x (111)] series. On-top CO is observed around 2070 cm(-1) on both Pd(S)-[n(111) x (111)] and Pd(S)-[n(100) x (111)] series. The band intensity is enlarged with the increase of the step atom density, supporting that on-top CO around 2070 cm(-1) is adsorbed at steps. A high frequency band of on-top CO adsorbed on the terrace is found around 2100 cm(-1) on Pd(S)-[n(111) x (111)] surfaces with n >= 20. Bridge-bonded CO gives a predominant IRAs band around 1980 cm(-1) on all the surfaces. The band intensity of bridge-bonded CO does not correlate with the step atom density; bridge-bonded CO is adsorbed on both terrace and step sites. The on-top CO at steps has higher Stark tuning rate (dv/dE) than the one at terraces on Pd(S)-[n(111) x (111)] electrodes. (c) 2005 Elsevier B.V. All rights reserved.
机译:在Pd(S)-[n(1 11)x(111)](n = 2,3)上研究了吸附的CO的结合位置(平台,台阶)和位置(在顶部,桥键结合,三重) ,5、9、20,无穷大)和Pd(S)-[n(100)X(111)](n = 2、5、9,无穷大)电极在0.1 M HClO4中充满了CO,使用红外反射吸收光谱法IRAS)。在台地原子行n> = 5的Pd(S)-[n(111)x(111)]电极上,在1950 cm(-1)附近观察到三重CO带。谱带强度随碳原子数的增加而增强。露台宽度;三重CO吸附在Pd(S)-[n(111)x(111)]系列平台上。在Pd(S)-[n(100)x(111)]系列上找不到三重CO。在Pd(S)-[n(111)x(111)]和Pd(S)-[n(100)x(111)]系列上均在2070 cm(-1)附近观察到顶部CO。随着阶跃原子密度的增加,能带强度增大,支持了2070 cm(-1)左右的顶部CO在阶跃处吸附。在n> = 20的Pd(S)-[n(111)x(111)]表面上的2100 cm(-1)处发现吸附在平台上的顶部CO的高频带。在所有表面上都具有一个约1980 cm(-1)的IRAs主导带。桥键合CO的能带强度与阶跃原子密度无关。桥键合的CO吸附在台阶和台阶部位。阶跃上的顶部CO具有比Pd(S)-[n(111)x(111)]电极上的平台上更高的Stark调谐速率(dv / dE)。 (c)2005 Elsevier B.V.保留所有权利。

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