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在常规溶剂和离子液体中新型电子给体-受体二联体的特性研究。

Characterization of a New Electron Donor-Acceptor Dyad in Conventional Solvents and Ionic Liquids.

机构信息

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

Department of Chemistry , University of Missouri - Columbia , Columbia , Missouri 65211 , United States.

出版信息

J Phys Chem B. 2019 Nov 7;123(44):9395-9407. doi: 10.1021/acs.jpcb.9b07077. Epub 2019 Oct 24.

Abstract

Ionic liquids are being tested as potential replacements for current electrolytes in energy-related applications. Electron transfer (ET) plays a central role in these applications, making it essential to understand how ET in ionic liquids differs from ET in conventional organic solvents and how these differences affect reaction kinetics. A new intramolecular electron donor-acceptor probe was synthesized by covalently linking the popular photoacceptor coumarin 152 with the donor dimethylaniline to create the dyad "C152-DMA" for potential use in probing dynamical solvent effects in ionic liquids. Molecular dynamics simulations of this dyad show the considerable conformational flexibility of the linker group but over a range of geometries in which the ET rate parameters vary little and should have minimal effect on reaction times >100 ps. Steady-state and time-resolved fluorescence methods show the spectra of C152-DMA to be highly responsive to solvent polarity, with ET rates varying over the range of 10 to 10 s between nonpolar and high-polarity conventional solvents. The sensitivity to hydrolysis in the presence of acidic impurities limits the dyad's use to ionic liquids of high purity. The results in the few ionic liquids examined here suggest that in addition to solvent polarity, electron transfer in C152-DMA also depends on solvent fluidity or solvation times.

摘要

离子液体正被测试作为能源相关应用中现有电解质的潜在替代品。电子转移 (ET) 在这些应用中起着核心作用,因此了解离子液体中的 ET 如何与传统有机溶剂中的 ET 不同以及这些差异如何影响反应动力学至关重要。通过将流行的光受体香豆素 152 与供体二甲苯胺共价连接,合成了一种新的分子内电子给体-受体探针,创建了二联体“C152-DMA”,用于潜在探测离子液体中的动态溶剂效应。该二联体的分子动力学模拟表明连接基团具有相当大的构象灵活性,但在一系列几何形状中,ET 速率参数变化很小,对 >100 ps 的反应时间应几乎没有影响。稳态和时间分辨荧光方法表明,C152-DMA 的光谱对溶剂极性高度敏感,在非极性和高极性传统溶剂之间,ET 速率在 10 到 10 s 之间变化。在存在酸性杂质的情况下对水解的敏感性限制了二联体在高纯度离子液体中的使用。这里检查的少数几种离子液体的结果表明,除了溶剂极性外,C152-DMA 中的电子转移还取决于溶剂流动性或溶剂化时间。

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