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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Intramolecular Excimer Formation Dynamics of 1,3-Bis-(1-pyrenyl)propane within 1-Butyl-3-methylimidazolium Hexafluorophosphate and Its Polyethylene Glycol Mixtures
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Intramolecular Excimer Formation Dynamics of 1,3-Bis-(1-pyrenyl)propane within 1-Butyl-3-methylimidazolium Hexafluorophosphate and Its Polyethylene Glycol Mixtures

机译:1-丁基-3-甲基咪唑六氟磷酸盐及其聚乙二醇混合物中1,3-双-(1-吡啶基)丙烷的分子内准分子形成动力学

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Mixtures of ionic liquid with polyethylene glycol (PEG) have shown interesting features as solubilizing media. Intramolecular excimer formation dynamics of 1,3-bis-(1-pyrenyl)propane [1Py(3)1Py] is investigated within mixtures of a common and popular ionic liquid 1-butyl-3-methylimidazoliurn hexafluorophosphate ([bmim][PF6]) with PEGs of average molecular weight (MW) 200 (PEG200), average MW 400 (PEG400), number-average MW M-n 570-630 (PEG600), and number-average M-n 950-1050 (PEG1000) over the complete composition range at a 10 degrees interval in the temperature range 10-90 degrees C. Irrespective of the composition of the medium and the temperature, excited-state intensity decay of the excimer fluorescence best fits to a three-exponential decay function, suggesting the presence of one excited-state monomer and two kinetically distinguishable excimers where both excimers are populated simultaneously by the excited monomer with no interconversion between the two excimers. In neat PEGs for temperatures <= 50 degrees C, intensity decay data of monomer fluorescence best fits to a single-exponential decay function, which implies the dissociation of both excimers back to the monomer to be insignificant. As the temperature is increased, the fits become closer to a double-exponential decay function, implying dissociation of one of the excimers to become significant. In neat [bmim][PF6], while a double-exponential decay function is required to fit the monomer excited-state intensity decay data at lower temperatures, three exponentials are required to satisfactorily fit the data at higher temperatures, suggesting both excimers significantly dissociate back to the monomer at higher temperatures within the ionic liquid. Within long-chain PEG-containing ([bmim][PF6] + PEG) mixtures, PEG as opposed to [bmim] [PF6] controls the excimer formation dynamics by supposedly wrapping around the excimer, thus hindering dissociation back to the monomer. The overall rate constant of the excimer formation within ([bmim] [PF6] + PEG) mixtures is found to scale better with the microviscosity rather than the bulk viscosity of the mixtures.
机译:离子液体与聚乙二醇(PEG)的混合物已显示出作为增溶介质的有趣特征。在常见和流行的离子液体1-丁基-3-甲基咪唑啉六氟磷酸盐([bmim] [PF6])的混合物中研究了1,3-双-(1-吡啶基)丙烷[1Py(3)1Py]的分子内准分子形成动力学)在整个组成范围内具有平均分子量(MW)200(PEG200),平均MW 400(PEG400),数均MW Mn 570-630(PEG600)和数均Mn 950-1050(PEG1000)的PEG在10-90摄氏度的温度范围内以10度为间隔。无论介质的成分和温度如何,准分子荧光的激发态强度衰减最适合三指数衰减函数,表明存在一种激发态单体和两个动力学上可区分的受激准分子,其中两个受激准分子同时被受激单体填充,而两个受激准分子之间没有相互转换。在温度小于等于50摄氏度的纯PEG中,单体荧光的强度衰减数据最适合单指数衰减函数,这意味着两个受激准分子返回单体的解离作用很小。随着温度升高,拟合变得更接近于双指数衰减函数,这意味着准分子之一的离解变得显着。在纯净的[bmim] [PF6]中,虽然需要双指数衰减函数来拟合较低温度下的单体激发态强度衰减数据,但需要三个指数才能令人满意地拟合较高温度下的数据,这表明两个准分子都显着分离在较高温度下回到离子液体中的单体。在包含长链PEG([bmim] [PF6] + PEG)的混合物中,与[bmim] [PF6]相对的PEG通过假定包裹在准分子上而控制了准分子的形成动力学,从而阻碍了离解回到单体上。发现([bmim] [PF6] + PEG)混合物中准分子形成的总速率常数随混合物的微粘度而不是混合物的整体粘度而更好地缩放。

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