Consecutive Multicomponent Coupling-Addition Synthesis and Chromophore Characteristics of Cyclohexene-Embedded Merocyanines and Cyanines

Photochem Pub Date : 2022-08-19 DOI:10.3390/photochem2030044
Julian Papadopoulos, Tabea Gerlach, G. Reiss, B. Mayer, T. Müller
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引用次数: 2

Abstract

Merocyanines with embedded butadiene structure in a cyclohexane scaffold are readily obtained by consecutive three-component alkynylation-addition sequences in moderate to excellent yield. Moreover, employing pyrrolidine as an amine provides a pseudo four-component synthesis of related cyanines by carbonyl condensation of the heterocyclic amine in excellent yield. While the merocyanines are essentially nonluminescent, pentamethine cyanines show luminescence with low quantum yield. TDDFT calculations using various exchange correlation hybrid functionals in the gas phase and explicit continuum of dichloromethane underline that the lowest energy absorption bands are highly solvent dependent for a merocyanine and cyanine model. The blue-shifted deviation from the experimental spectra agrees with related merocyanine and cyanine systems. The lowest energy absorption band of merocyanines contains n-π* character, which rationalizes the absence of luminescence.
环己烯包埋merocyanine和Cyanines的连续多组分偶联加成合成及其发色团特性
通过连续的三组分炔化加成序列以中等至优异的产率容易获得在环己烷支架中具有嵌入丁二烯结构的花青素。此外,使用吡咯烷作为胺通过杂环胺的羰基缩合以优异的产率提供了相关花青的伪四组分合成。虽然亚花青本质上是不发光的,但五甲基花青显示出低量子产率的发光。使用气相中的各种交换相关混合泛函和二氯甲烷的显式连续体进行的TDDFT计算强调,对于亚花青和花青模型,最低能量吸收带高度依赖于溶剂。实验光谱的蓝移偏差与相关的亚花青和花青体系一致。亚花青的最低能量吸收带包含n-π*特征,这合理地解释了没有发光。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.60
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0.00%
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