首页> 外文OA文献 >Voltammetric study of adsorption layers of various 4-pyridyl terminated surfactants on a Au(1 1 1) electrode: Effects of electronic property of pyridyl group and intermolecular hydrogen bonding upon potential-driven phase changes
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Voltammetric study of adsorption layers of various 4-pyridyl terminated surfactants on a Au(1 1 1) electrode: Effects of electronic property of pyridyl group and intermolecular hydrogen bonding upon potential-driven phase changes

机译:各种4-吡啶基封端的表面活性剂在au(111)电极上的吸附层的伏安研究:吡啶基的电子性质和分子间氢键对电位驱动的相变的影响

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摘要

The major factors determining the potential-driven phase changes of the films of 4-pyridyl terminated water-insoluble neutral surfactants on a Au(111) electrode were described using the results of dc and ac voltammetric measurements. In total six surfactants were used to elucidate the effects of electronic property of the 4-pyridyl head group, hydrogen bonding ability between amide groups, direction of the amide bond, and bulkiness around the head group upon the potential dependent reorientation and adsorption-desorption processes.Comparison of the behavior of pentadecyl 4-pyridyl ether (C15-O-Py) and 1-pyridin-4-yl-hexadecan-1-one (C15-(C=O)-Py), possessing respectively, the highest and lowest excess electronic charge on the pyridyl nitrogen among the six surfactants, revealed that the latter exhibits more distinct reorientation of pyridyl group corresponding to phase transition between condensed and loose-packed states and narrower potential region of the compact film formation. Introduction of amide group in the alkyl chains of the surfactants reduced the packing of the adsorbed film in the potential region of the compact film formation,as evidenced by an increase of the differential capacitance. It was found that the existence of amide group facilitates the potential-driven phase transition of closely packed film from a condensed state to a loosely packed state, whereas it suppresses the transition of loosely packed film. The concomitant steric effect was also discussed.
机译:使用直流和交流伏安法测量的结果描述了决定Au(111)电极上4-吡啶基封端的水不溶性中性表面活性剂膜的电位驱动相变的主要因素。总共使用了六种表面活性剂来阐明4-吡啶基头部基团的电子性能,酰胺基团之间的氢键结合能力,酰胺键的方向以及头部基团周围的电势对电位依赖性重新取向和吸附-解吸过程的影响十五烷基4-吡啶基醚(C15-O-Py)和1-吡啶基-4-基-十六烷-1-酮(C15-(C = O)-Py)的行为比较,分别具有最高和最高六种表面活性剂中吡啶基氮上的最低过量电子电荷最低,这表明后者显示出吡啶基更明显的重新取向,对应于缩合和松散状态之间的相变以及致密膜形成的较窄电位区域。表面活性剂的烷基链中引入酰胺基减少了致密膜形成的潜在区域中被吸附膜的堆积,这由差分电容的增加所证明。发现酰胺基团的存在促进了紧密堆积薄膜从凝结状态到松散堆积状态的电势驱动相变,而它抑制了松散堆积的膜的转变。还讨论了伴随的空间效应。

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