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Heterogeneity in a room-temperature ionic liquid: Persistent local environments and the red-edge effect

机译:室温离子液体中的异质性:持久的局部环境和红边效应

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In this work, we investigate the slow dynamics of 1-butyl-3-methylimidazolium hexafluorophosphate, a very popular room-temperature ionic solvent. Our study predicts the existence of heterogeneity in the liquid and shows that this heterogeneity is the underlying microscopic cause for the recently reported "red-edge effect" (REE) observed in the study of fluorescence of the organic probe 2-amino-7-nitrofluorene. This theoretical work explains in microscopic terms the relation between REE and dynamic heterogeneity in a room-temperature ionic liquid (IL). The REE is typical of micellar or colloidal systems, which are characterized by microscopic environments that are structurally very different. In contrast, in the case of this room-temperature IL, the REE occurs because of the long period during which molecules are trapped in quasistatic local solvent cages. This trapping time, which is longer than the lifetime of the excited-state probe, together with the inability of the surroundings to adiabatically relax, induces a set of site-specific spectroscopic responses. Subensembles of fluorescent molecules associated with particular local environments absorb and emit at different frequencies. We describe in detail the absorption wavelength-dependent emission spectra of 2-amino-7-nitrofluorene and show that this dependence on λ_(ex) is characteristic of the IL and, as is to be expected, is absent in the case of a normal solvent such as methanol.
机译:在这项工作中,我们研究了非常受欢迎的室温离子溶剂1-​​丁基-3-甲基咪唑六氟磷酸盐的慢动力学。我们的研究预测了液体中异质性的存在,并表明这种异质性是导致最近报道的在有机探针2-氨基-7-硝基芴的荧光研究中观察到的“红边效应”(REE)的潜在微观原因。 。这项理论工作从微观角度解释了室温离子液体(IL)中REE与动态异质性之间的关系。 REE是胶束或胶体系统的典型特征,其微观环境在结构上有很大不同。相反,在此室温IL的情况下,发生REE的原因是分子被困在准静态局部溶剂笼中的时间很长。该捕获时间长于激发态探针的寿命,加上周围环境无法绝热地松弛,从而引发了一组特定位置的光谱响应。与特定局部环境相关的荧光分子子组件以不同的频率吸收和发射。我们详细描述了2-氨基-7-硝基芴的吸收波长相关的发射光谱,并表明这种对λ_(ex)的依赖性是IL的特征,并且可以预期,在正常情况下不存在这种依赖性。甲醇等溶剂。

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