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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Toward Understanding Solute-Solvent Interaction in Room-Temperature Mono- and Dicationic Ionic Liquids: A Combined Fluorescence Spectroscopy and Mass Spectrometry Analysis
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Toward Understanding Solute-Solvent Interaction in Room-Temperature Mono- and Dicationic Ionic Liquids: A Combined Fluorescence Spectroscopy and Mass Spectrometry Analysis

机译:理解室温单离子和双阳离子离子液体中的溶剂-溶剂相互作用:荧光光谱和质谱分析相结合

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摘要

Rotational relaxation dynamics of nonpolar perylene, dipolar coumarin 153, and a negatively charged probe, sodium 8-methoxypyrene-l,3,6-sulfonate (MPTS), have been investigated in a dicationic ionic liquid, l,6-bis-(3-methylimidazolium-l-yl)hexane bis-(trifluoromethylsulfonyl)amide ([C6(MIm)2][NTf2]2), and a structurally similar mono-cationic ionic liquid, 1-hexyl-3-methylimidazolium bis(trifluoromethylsulfonyl)amide ([C6MIm][NTf2]), to have a comprehensive and a quantitative understanding on the solute-solvent interaction in these media. Analysis of the rotational relaxation dynamics data by Stokes-Einstein-Debye (SED) hydrodynamic theory reveals that perylene rotation is found to be the fastest compared to the other two probes and shows slip to sub-slip behavior, coumarin 153 rotation lies between the stick and slip boundary, and MPTS shows a superstick behavior in [C6MIm][NTf2]. Interestingly, MPTS exhibits a normal SED hydrodynamics in dicationic [C6(MIm)2][NTf2]2, in spite of the fact that dicationic ionic liquid contains two cationic sites bearing acidic hydrogen (C2-H) which may be available to form stronger interaction with the negatively charged MPTS. The difference in the rotational diffusion behavior of these three probes is a reflection of their location in different distinct environments of these ILs. Superstick behavior of MPTS in monocationic IL has been attributed to its specific hydrogen bonding interaction with the corresponding imidazolium cation. The relatively faster rotational behavior of MPTS in dicationic IL has been explained by resorting to mass spectrometry. Mass spectral analysis demonstrates that positively charged (imidazolium) sites in dicationic IL are strongly associated with negatively charged bis-(trifluoromethylsulfonyl)amide anion (NTf2~-), which in turn makes it difficult for imidazolim cation to have stronger hydrogen bonding interaction with bulkier negatively charged molecule MPTS.
机译:非离子per,偶极香豆素153和带负电荷的探针8-甲氧基re-1,3,6-磺酸钠(MPTS)的旋转弛豫动力学已在离子型离子液体l,6-bis-(3 -甲基咪唑-1-基)己烷双(三氟甲基磺酰基)酰胺([C6(MIm)2] [NTf2] 2)和结构相似的单阳离子离子液体,1-己基-3-甲基咪唑双-三氟甲基磺酰基)酰胺([C6MIm] [NTf2]),以全面,定量地了解这些介质中的溶质-溶剂相互作用。通过Stokes-Einstein-Debye(SED)流体力学理论对旋转弛豫动力学数据进行的分析表明,与其他两个探针相比,per的旋转被发现是最快的,并且显示出滑移至亚滑的行为,香豆素153的旋转位于棒之间和滑移边界,而MPTS在[C6MIm] [NTf2]中显示了超级棒行为。有趣的是,尽管阳离子型离子液体包含两个带有酸性氢(C2-H)的阳离子位点,但MPTS在离子型[C6(MIm)2] [NTf2] 2中仍显示出正常的SED流体动力学。与带负电的MPTS交互。这三种探针的旋转扩散行为的差异反映了它们在这些IL的不同环境中的位置。 MPTS在单阳离子IL中的超粘行为归因于其与相应的咪唑鎓阳离子的特定氢键相互作用。 MPTS在专用IL中相对较快的旋转行为已通过质谱法进行了解释。质谱分析表明,IL离子中带正电荷的(咪唑鎓)位点与带负电荷的双-(三氟甲基磺酰基)酰胺阴离子(NTf2-)强烈相关,这反过来使咪唑啉阳离子更难与更大的氢键相互作用带负电荷的分子MPTS。

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