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首页> 外文期刊>New Journal of Chemistry >Optical and XPS evidence for the electrochemical generation of an N-heterocyclic carbene and its CS2 adduct from the ionic liquid [bmim][PF6]
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Optical and XPS evidence for the electrochemical generation of an N-heterocyclic carbene and its CS2 adduct from the ionic liquid [bmim][PF6]

机译:光学和XPS证据是从离子液体[BMIM]的N-杂环基石及其CS2加合物的电化学产生的证据[PF6]

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摘要

Room temperature ionic liquids continue to be at the forefront of chemistry, covering a broad spectrum of research areas from electrochemistry and energy to catalysis and green chemistry. Therefore, it is of great value to fully understand the chemical and electrochemical reactivity and stability of ionic liquids utilized in these applications. In this context, we have investigated the electrochemical generation of an N-heterocyclic carbene and its CS2 adduct from the ionic liquid [bmim][PF6], and X-ray photoelectron spectroscopy (XPS) proved to be a highly effective spectroscopic tool to study such systems. Initially, the dithiocarboxylate adduct was chemically synthesized as a reference compound starting from both [bmim][PF6] and [bmim][OAc], and characterized by HRMS, and H-1-and C-13-NMR, FTIR, visible and X-ray photoelectron spectroscopy. While a simple mixture of [bmim][PF6] and CS2 revealed no evidence of adduct formation, the application of an electrochemical stimulus led to the formation of the dithiocarboxylate adduct as evidenced optically and through the newly formed S2p peak in the XP spectrum. Further evidence for the electrochemical reduction of [bmim][PF6] to the corresponding N-heterocyclic carbene came from the XPS analysis via the appearance of a new N1s peak in the XP spectrum.
机译:室温离子液体继续处于化学的最前沿,涵盖从电化学和能量到催化和绿色化学的广泛研究领域。因此,能够充分了解这些应用中使用的离子液体的化学和电化学反应性和稳定性具有重要价值。在这种情况下,我们研究了从离子液体[BMIM] [PF6]和X射线光电子谱(XPS)的电化学产生,并被证明是一种高效的学习的光谱刀具这样的系统。最初,二硫代羧酸加合物作为从[BMIM] [PF6]和[BMIM] [OAC]开始的参考化合物,并以HRMS为特征,以及H-1-和C-13-NMR,FTIR,可见和X射线光电子能谱。虽然[BMIM] [PF6]和CS2的简单混合物没有显示加合物形成的证据,但是电化学刺激的施加导致二硫代羧酸二羧酸加合物的形成,如光学和通过新形成的XP光谱中的新形成的S2P峰值。通过在XP光谱中新的N1S峰值的外观,将XPS分析从XPS分析中进一步证明了[Bmim] [PF6]对相应的N-杂环切菜的进一步证据。

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