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溶剂控制的离子液体中的分子内电子转移。

Solvent-controlled intramolecular electron transfer in ionic liquids.

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania 16802, United States.

出版信息

J Phys Chem B. 2011 May 26;115(20):6592-607. doi: 10.1021/jp200339e. Epub 2011 May 2.

Abstract

The rates of excited-state intramolecular electron transfer in 9-(4-biphenyl)-10-methylacridinium (BPAc(+)), crystal violet lactone (CVL), and bianthryl have been measured in a variety of ionic liquids using time-correlated single-photon counting. All three of these reactions had previously been studied in conventional dipolar solvents and their reaction rates shown to be controlled by solvation dynamics. The main focus of this work is to ask whether the same relationships between reaction and solvation times already established in dipolar solvents also apply in ionic liquids. In BPAc(+), where reaction conforms to a simple two-state kinetic scheme and reaction rates are easily measured, the result is a clear "yes". In the case of bianthryl, whose spectra reflect the more complex kinetics of a barrierless process, the answer is also yes. In contrast to other recent studies of bianthryl, the present results demonstrate that the same equality between (integral) reaction times and solvation times observed in conventional solvents also applies in ionic liquids. Finally, the case of CVL is less clear due to the greater uncertainty associated with the data afforded by this weak fluorophore, combined with a lack of data in conventional solvents having large solvation times. But the CVL reaction can also be reasonably interpreted as exhibiting a common behavior in dipolar and ionic solvents.

摘要

使用时间相关单光子计数法,我们测量了 9-(4-联苯基)-10-甲基吖啶鎓(BPAc(+))、结晶紫内酯(CVL)和双吖啶在各种离子液体中的激发态分子内电子转移速率。这三种反应之前都在传统偶极溶剂中进行了研究,其反应速率由溶剂化动力学控制。这项工作的主要重点是询问在偶极溶剂中已经建立的反应和溶剂化时间之间的相同关系是否也适用于离子液体。在 BPAc(+)中,反应符合简单的两态动力学方案,并且很容易测量反应速率,结果是明确的“是”。对于双吖啶,其光谱反映了无势垒过程更复杂的动力学,答案也是肯定的。与最近对双吖啶的其他研究相比,本研究结果表明,在传统溶剂中观察到的(积分)反应时间和溶剂化时间之间的相同等式也适用于离子液体。最后,由于与弱荧光团相关的数据不确定性更大,再加上在具有较大溶剂化时间的传统溶剂中缺乏数据,CVL 反应的情况不太清楚。但是,CVL 反应也可以合理地解释为在偶极和离子溶剂中表现出共同的行为。

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