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Synthesis and photophysical properties of doubly porphyrin-substituted cyanine dye

机译:卟啉双取代花菁染料的合成及光物理性质

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New porphyrin-(cyanine dye) composites, in which two porphyrins are bridged by a cyanine dye through triple bonds, were synthesized. In the UV-vis absorption spectra of the composites, the Soret band and Q-band were red-shifted to 436 and 575–640 nm, respectively. The absorption originating from the cyanine dye portion was also red-shifted from 710 nm to 764 nm, suggesting the expansion of πconjugation over the porphyrin and cyanine dye parts. Fluorescence studies suggested that energy transfer from the porphyrin portion to the cyanine dye moiety occurred. The fluorescence intensity decreased with increasing dielectric constants of solvents, suggesting intramolecular photoinduced electron transfer from the porphyrin to the cyanine dye parts. The effective two-photon absorption (2PA) cross-section values were measured using a nanosecond open aperture Z-scan method. The maximum effective 2PA cross-section and two-photon excited fluorescence cross-section values were 33,000 GM and 4,800 GM, respectively, at 860 nm in toluene/pyridine (95:5).
机译:合成了新的卟啉-(花青染料)复合材料,其中两个卟啉通过花键染料通过三键桥接。在复合材料的紫外可见吸收光谱中,Soret谱带和Q谱带分别红移到436和575-640 nm。来自花青染料部分的吸收也从710 nm红移到764 nm,表明π共轭在卟啉和花青染料部分上扩展。荧光研究表明发生了从卟啉部分到花青染料部分的能量转移。荧光强度随着溶剂介电常数的增加而降低,表明分子内光致电子从卟啉转移至花青染料部分。有效的两光子吸收(2PA)横截面值是使用纳秒级开孔Z扫描方法测量的。在甲苯/吡啶(95:5)中,在860 nm处,最大有效2PA横截面和两光子激发的荧光横截面值分别为33,000 GM和4,800 GM。

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