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Investigation of Molecular Structures and Ordering at Solid Liquid Interfaces Using Novel Emersion Vibrational Spectroscopy

机译:使用新型脉冲振动光谱研究固液界面的分子结构和有序性

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摘要

Molecular level understanding of solid-liquid interfaces in ambient condition is still a challenging, but exciting area. The work presented here demonstrates the effectiveness of emersion IRRAS as a new tool in our arsenal to expand our understanding of solid-liquid interfaces through the investigation of model solvent/organically modified interfaces and electrochemically relevant interfaces using novel emersion spectroscopy. The emersion approach effectively isolates the molecularly-thin emersed liquid layer under ambient conditions by physically removing bulk liquid from the interface. Without the interferences from bulk liquid, the emersed layer is accessible with conventional spectroscopic methods.In this work, development and implementation of emersion IRRAS is first described. Emersion IRRAS was used to investigate the model solvents water and methanol at three w-terminated-SAM-modified Ag surfaces (11-MUA, 11-MUD, and UDT-modified Ag) possessing a range of surface energies. These surfaces had been previously characterized with emersion Raman spectroscopy and/or ellipsometry. Furthermore, solvation of CO on Pt by three solvents (methanol, acetonitrile, and water) was investigated in an effort to attain molecular-level insight into electrochemically-relevant interfaces.Experimental results presented show successful implementation of emersion IRRAS. For each of the systems studied, interfacial solvent spectra clearly differed from those of bulk solvents indicating unique molecular structures of emersed liquids.
机译:分子水平对环境条件下的固液界面的理解仍然是一个充满挑战但令人兴奋的领域。本文介绍的工作通过使用新型的原子光谱技术研究了模型溶剂/有机修饰的界面和电化学相关的界面,证明了IRERS作为一种新的工具在我们的军械库中的有效性,以扩展我们对固液界面的理解。通过物理除去界面上的大量液体,该Emersion方法可在环境条件下有效隔离分子稀薄的Emered液体层。在没有散装液体干扰的情况下,可以使用常规的光谱学方法访问浮雕层。在这项工作中,首先描述了浮雕IRRAS的开发和实现。 Emersion IRRAS用于研究具有一定范围表面能的三个w末端SAM改性的Ag表面(11-MUA,11-MUD和UDT改性的Ag)的模型溶剂水和甲醇。这些表面先前已经通过拉曼光谱和/或椭圆偏振法进行了表征。此外,还研究了用三种溶剂(甲醇,乙腈和水)将CO在Pt上的溶剂化作用,以期获得与电化学相关的界面的分子水平见解。实验结果表明,成功实现了离子IRRAS。对于所研究的每种系统,界面溶剂光谱与本体溶剂的光谱明显不同,表明涌现液体的独特分子结构。

著录项

  • 作者

    Heier Shinobu Tsuruta;

  • 作者单位
  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 en
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