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基于芳香族富马腈核心的给体-连接体-受体-连接体-给体(D-π-A-π-D)化合物:合成与光物理性质。

Aromatic fumaronitrile core-based donor-linker-acceptor-linker-donor (D-pi-A-pi-D) compounds: synthesis and photophysical properties.

机构信息

Department of Chemistry, Center for Photochemical Sciences, Bowling Green State University, Bowling Green, Ohio 43403, USA.

出版信息

J Phys Chem A. 2010 Apr 8;114(13):4542-9. doi: 10.1021/jp9115589.

Abstract

A new class of aromatic fumaronitrile core-based compounds with different donors and linkers has been synthesized and well characterized. Compounds 1 and 2 have indole and 2-phenylindole groups as electron donors, respectively. Compounds 3 and 4 have a diphenylamino group as the electron donor, and compound 5 has a 3,6-di-tert-butylcarbazole group as an electron donor. These compounds absorb in the blue-to-green region and emit in the blue-to-red region depending on the electron donor, linker, and solvents. The quantum yields of fluorescence of these compounds in solution are measured and found to be moderate, but in solid states, they are high. These compounds display strong emission solvatochromism that is reflected by a large shift in their fluorescence emission maxima on changing the solvents. This change is accompanied by a successive decrease in fluorescence intensity. The fluorescence lifetimes of these compounds are measured in different solvent and found to vary from <1 to 7 ns. Optical switching of these compounds with solvents, concentration, and excitation energy have been studied. The correlation between the functional group and optical properties has been established to some extent. The ability of these compounds to function as colorimetric and luminescence pH sensors is demonstrated with color changes and luminescence switching upon the addition of trifluoroacetic acid. The potentiality of these compounds for application in optoelectronics has been optically assessed.

摘要

已经合成并很好地表征了一类具有不同供体和连接基团的新型芳香族富马腈核基化合物。化合物 1 和 2 分别具有吲哚和 2-苯基吲哚基团作为电子供体。化合物 3 和 4 具有二苯氨基作为电子供体,化合物 5 具有 3,6-二叔丁基咔唑基团作为电子供体。这些化合物根据电子供体、连接基团和溶剂在蓝绿色区域吸收,并在蓝红色区域发射。这些化合物在溶液中的荧光量子产率被测量并发现适中,但在固态时较高。这些化合物显示出强烈的发射溶剂化变色,这反映在它们的荧光发射最大值在改变溶剂时发生大的位移。这种变化伴随着荧光强度的连续降低。这些化合物的荧光寿命在不同的溶剂中被测量,并发现从 <1 到 7 ns 不等。已经研究了这些化合物与溶剂、浓度和激发能的光学开关。在某种程度上建立了官能团与光学性质之间的相关性。通过添加三氟乙酸,这些化合物作为比色和发光 pH 传感器的能力得到了证明,颜色发生变化,发光发生开关。这些化合物在光电子学中的应用潜力已经得到了光学评估。

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