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3-炔基吲哚作为构建电子可调谐吲哚基推-拉发色团的砌块。

3-Alkynylindoles as Building Blocks for the Synthesis of Electronically Tunable Indole-Based Push-Pull Chromophores.

机构信息

Department of Chemistry, Middle East Technical University, 06800 Ankara, Turkey.

出版信息

J Org Chem. 2022 Mar 18;87(6):4385-4399. doi: 10.1021/acs.joc.2c00067. Epub 2022 Mar 1.

Abstract

In this study, two different classes of push-pull chromophores were synthesized in modest to excellent yields by formal [2+2] cycloaddition-retroelectrocyclization (CA-RE) reactions. -Methyl indole was introduced as a new donor group to activate alkynes in the CA-RE transformations. Depending on the side groups' size and donor/acceptor characteristics, -methyl indole-containing compounds exhibited λ values ranging between 378 and 658 nm. The optoelectronic properties of the reported D-A-type structures were studied by UV/vis spectroscopy and computational studies. The complete regioselectivity observed in the products was elaborated by one-dimensional (1D) and two-dimensional (2D) NMR studies, and the electron donor strength order of -alkyl indole and triazene donor groups was also established. The intramolecular charge-transfer characteristics of the target push-pull chromophores were investigated by frontier orbital depictions, electrostatic potential maps, and time-dependent density functional theory calculations. Overall, the computational and experimental results match each other. Integrating a new donor group, -alkyl indole, into the substrates used in formal [2+2] cycloaddition-retroelectrocyclizations has significant potential to overcome the limited donor-substituted substrate scope problem of CA-RE reactions.

摘要

在这项研究中,通过形式上的[2+2]环加成-反电环化(CA-RE)反应,以中等至优异的产率合成了两类不同的推拉发色团。将 - 甲基吲哚引入作为新的给体基团,以在 CA-RE 转化中激活炔烃。根据侧基的大小和供体/受体特性,含 - 甲基吲哚的化合物表现出 378 至 658nm 之间的 λ 值。通过紫外/可见光谱和计算研究研究了所报道的 D-A 型结构的光电性质。通过一维(1D)和二维(2D)NMR 研究阐述了产物中观察到的完全区域选择性,还确定了 - 烷基吲哚和三嗪给体基团的电子给体强度顺序。通过前沿轨道描绘、静电势图和含时密度泛函理论计算研究了目标推拉发色团的分子内电荷转移特性。总体而言,计算和实验结果相互匹配。将新的给体基团 - 烷基吲哚整合到形式上的[2+2]环加成-反电环化中使用的底物中,具有克服 CA-RE 反应中受限于供体取代的底物范围问题的巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cef/8938952/3fc9f2994fe1/jo2c00067_0002.jpg

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