首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Carbazole Donor-Carbazole Linker-Based Compounds: Preparation, Photophysical Properties, and Formation of Fluorescent Nanoparticles
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Carbazole Donor-Carbazole Linker-Based Compounds: Preparation, Photophysical Properties, and Formation of Fluorescent Nanoparticles

机译:咔唑供体-咔唑连接基为基础的化合物:制备,光物理性质和荧光纳米粒子的形成。

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摘要

A new class of highly soluble and stable compounds (1-4) has been synthesized and characterized. Compounds 1, 2, and 3 have 3,6-disubstituted carbazole as electron-donor-linked through the 2,7-positions of N-substituted carbazole with variably substituted phenyl acetylenes as electron acceptors. Compound 4 has two identical donors linked through the 2,7-position of N-substituted carbazole. These compounds absorb from UV to visible region and emit intensely from blue to green. The effect on the photophysical properties of these compounds by changing acceptors while keeping the donor and linker constant has been studied. A study of solvent effects on their photophysical properties has shown that an increase in polarity of the solvent causes a reduction of fluorescence quantum yields.With a decrease in temperature, these compounds showed increased emission intensity accompanied by a red shift of emission. Edge excitation red shift showed as much as 128 nm for compound 2 in isopropanol. Solid-state fluorescence quantum yields vary from 0.27 to 0.68 for these compounds. The fluorescence lifetimes of these compounds are solvent dependent. Compound 2 showed remarkable change in emission with concentration. Compounds 2 and 3 form highly stable fluorescent organic nanoparticles (FONs) in tetrahydrofuran/water mixtures. The general and specific solvent effect on the emission properties of these compounds are investigated by Lipert-Mataga plots. The potentiality of these ompounds for use in dye-sensitized solar cells and in organic light-emitting diodes is under study in our laboratories.
机译:已经合成并表征了新型的高度可溶且稳定的化合物(1-4)。化合物1、2和3具有3,6-二取代的咔唑作为电子供体,其通过N-取代的咔唑的2,7-位与可变取代的苯基乙炔作为电子受体连接。化合物4具有通过N-取代的咔唑的2,7-位连接的两个相同的供体。这些化合物从紫外线吸收到可见光区域,并从蓝色强烈发射到绿色。已经研究了通过改变受体同时保持供体和连接体恒定对这些化合物的光物理性质的影响。对溶剂对其光物理性质的影响的研究表明,溶剂极性的增加会导致荧光量子产率的降低。随着温度的降低,这些化合物的发射强度增加,同时发射红移。化合物2在异丙醇中的边缘激发红移显示高达128 nm。这些化合物的固态荧光量子产率为0.27至0.68。这些化合物的荧光寿命取决于溶剂。化合物2显示出发射随浓度的显着变化。化合物2和3在四氢呋喃/水混合物中形成高度稳定的荧光有机纳米颗粒(FON)。通过Lipert-Mataga图研究了一般溶剂和特定溶剂对这些化合物的发射性能的影响。这些染料在染料敏化太阳能电池和有机发光二极管中的应用潜力正在我们的实验室中进行研究。

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