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4-二甲氨基吡啶(DMAP)在金表面吸附的表面增强红外吸收光谱研究。

Surface enhanced infrared absorption spectroscopy studies of DMAP adsorption on gold surfaces.

作者信息

Rosendahl Scott M, Danger Brook R, Vivek J P, Burgess Ian J

机构信息

Department of Chemistry, University of Saskatchewan, Saskatoon, Saskatchewan, S7N 5C9 Canada.

出版信息

Langmuir. 2009 Feb 17;25(4):2241-7. doi: 10.1021/la803404u.

Abstract

Attenuated total reflectance surface enhanced infrared absorption spectroscopy (ATR-SEIRAS) measurements have been employed to study the adsorption of dimethylaminopyridine (DMAP) and its conjugate acid (DMAPH+) on gold surfaces as a function of applied potential and solution pH. Based on our transmission measurements, we have been able to demonstrate that the acid/base forms of this pyridine derivative can be readily differentiated due to their distinct IR signals. When the solution pH is equal to the pKa of DMAPH+, we demonstrate that the adsorbing species is DMAP, oriented with its heterocyclic ring perpendicular to the electrode surface. In acidic electrolytes, our SEIRAS data provide direct spectroscopic evidence of DMAP monolayer formation even though the pH is 5 units below the pKa of the conjugate acid. Our data support a potential induced deprotonation of the endocyclic nitrogen and resulting coordination of the nitrogen lone pair to the gold surface. Both of these results confirm our existing model of DMAP adsorption previously based solely on electrochemical measurements. However, the present SEIRAS study also indicates that, at low pH, DMAPH+ can electrostatically coordinate to very negatively charged surfaces. This mode of adsorption was previously unobserved, illustrating the ability of in situ spectroscopic techniques to reveal new information that is not apparent from traditional electrochemical techniques such as differential capacity and chronocoulometry.

摘要

衰减全反射表面增强红外吸收光谱(ATR-SEIRAS)测量已被用于研究二甲基氨基吡啶(DMAP)及其共轭酸(DMAPH⁺)在金表面的吸附情况,该吸附情况是施加电位和溶液pH值的函数。基于我们的透射测量,我们已能够证明,由于该吡啶衍生物的酸/碱形式具有独特的红外信号,因此可以很容易地区分它们。当溶液pH值等于DMAPH⁺的pKa时,我们证明吸附物种是DMAP,其杂环垂直于电极表面取向。在酸性电解质中,尽管pH值比共轭酸的pKa低5个单位,但我们的SEIRAS数据提供了DMAP单层形成的直接光谱证据。我们的数据支持环内氮的电位诱导去质子化以及氮孤对与金表面的配位作用结果。这两个结果都证实了我们先前仅基于电化学测量得出的DMAP吸附现有模型。然而,目前的SEIRAS研究还表明,在低pH值下,DMAPH⁺可以静电配位到带非常负电荷的表面。这种吸附模式以前未被观察到,这说明了原位光谱技术揭示传统电化学技术(如微分电容和计时电量法)无法明显获得的新信息的能力。

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