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首页> 外文期刊>The Journal of Chemical Physics >Local environment of organic dyes in an ionic liquid-water mixture: FCS and MD simulation
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Local environment of organic dyes in an ionic liquid-water mixture: FCS and MD simulation

机译:离子液体 - 水混合物中有机染料的局部环境:FCS和MD模拟

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The composition dependent local environment of three organic dyes in binary mixtures of a room temperature ionic liquid (1-methyl-3-pentylimidazolium bromide, [pmim][Br]) and water is studied by fluorescence correlation spectroscopy (FCS) and molecular dynamics (MD) simulations. We used three dyes-neutral coumarin 480 (C480), anionic coumarin 343 (C343), and highly hydrophobic 4-(dicyanomethylene)-2-methyl-6-(p-dimethyl-aminostyryl)-4H-pyran (DCM)-to probe different environments in the binary mixtures. The heterogeneity of the [pmim][Br]-water mixture leads to multiple values (i.e., distribution) of diffusion coefficients (D-t). In these binary mixtures, the effective viscosity (eta(eff), obtained from FCS) and the local concentration of the [pmim] [Br] around the three dyes (revealed by MD simulations) are found to be quite different than that in bulk. The viscosity experienced by the C480 and C343 dyes is almost twice as large as that experienced by DCM dye. Through rigorous MD simulation, we show that in the vicinity of the less hydrophobic coumarin dyes (C480 and C343) compared to DCM dye, the local concentration of the [pmim] [Br] is similar to 3-7 times larger than that in bulk. In the case of the most hydrophobic dye, DCM, the local concentration of [pmim] [Br] is almost similar to bulk-like. Further analysis reveals the formation of hydrogen bond between the imidazolium ring of [pmim] [Br] and the carbonyl oxygen atom of the coumarin dyes (C - H-[pmim][Br] center dot center dot center dot O=C-Dye). Finally, computer simulation indicates a slow component of solvation dynamics in the [pmim][Br]-water mixture in the time scale of similar to 100-200 ps, which is similar to the experimental observation. Published by AIP Publishing.
机译:通过荧光相关光谱(FCS)和分子动力学研究了室温离子液体(1-甲基-3-四戊基溴化吡吡吡啶,γ)和水的二元混合物中三种有机染料的组成依赖性局部环境。 MD)模拟。我们使用了三种染料 - 中性香豆素480(C480),阴离子香豆素343(C343),高度疏水的4-(二氰基甲基)-2-甲基-6-(p-二甲基 - 氨基苯磺烯)-4H-吡喃(DCM) - 至在二元混合物中探测不同的环境。 [PMIM] - 水混合物的异质性导致扩散系数(D-T)的多个值(即,分布)。在这些二元混合物中,发现从FCS获得的有效粘度(ETA(EFF))和围绕三种染料(MD模拟的PMIM] [BR]的局部浓度与散装相比。 C480和C343染料所经历的粘度几乎是DCM染料所经历的两倍。通过严谨的MD模拟,我们表明,与DCM染料相比,疏水性香豆素染料(C480和C343)附近,[PMIM] [BR]的局部浓度与散装中的局部浓度相似至3-7倍。在最疏水染料的情况下,DCM,局部浓度的【PMIM] [BR]几乎类似于散装状。进一步的分析揭示了[PMIM] [BR]的咪唑鎓环与香豆素染料的羰基氧原子之间的氢键形成(C - H-[PMIM] [BR]中央点中心点中心点O = C-染料)。最后,计算机仿真表明[PMIM] [BR] - 水混合物中的溶剂化动力学的缓慢分量在类似于100-200 ps的时间等级中,类似于实验观察。通过AIP发布发布。

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