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通过锌盐合成薁取代的供体-受体聚次甲基以及1,6'-联薁、1,6';3,6''-三联薁和五薁:合成及其结构、光学和电化学性质

Azulene-Substituted Donor-Acceptor Polymethines and 1,6'-Bi-, 1,6';3,6''-Ter-, and Quinqueazulenes via Zincke Salts: Synthesis, and Structural, Optical, and Electrochemical Properties.

作者信息

Shoji Taku, Yamazaki Akari, Ariga Yukino, Uda Mayumi, Ando Daichi, Sasahara Nichika, Kai Naohito, Ito Shunji

机构信息

Department of Material Science, Graduate School of Science and Technology, Shinshu University, Matsumoto, 390-8621, Nagano, Japan.

Department of Chemistry, Faculty of Science, Shinshu University, Matsumoto, 390-8621, Nagano, Japan.

出版信息

Chempluschem. 2021 Apr 27;86(6):946-966. doi: 10.1002/cplu.202100174.

Abstract

Azulene-substituted donor-acceptor polymethines, bi-, ter-, and quinqueazulenes composed of the 1,6'-biazulene unit have been successfully prepared from corresponding Zincke salts. The synthesis of polymethines through the reaction of Zincke salts with several amines, followed by a Knoevenagel reaction with malononitrile, was accomplished in moderate to high yields (40-92 %). Meanwhile, the reaction of Zincke salts with secondary amines and the subsequent sequential condensation-cyclization with cyclopentadienide ions, so-called Ziegler-Hafner method, produced the corresponding 1,6'-biazulenes, 1,6';3,6''-terazulenes, and quinqueazulene, respectively. The structural, optical, and electrochemical properties of the azulene-substituted donor-acceptor polymethines, bi-, ter-, and quinqueazulenes were revealed by single-crystal X-ray structure analysis, UV/vis spectroscopy, voltammetry analysis, spectroelectrochemistry, and theoretical calculations. These results suggested that the substituents on the azulene ring and their substitution positions directly affect their reactivities, optical and electrochemical properties.

摘要

由相应的锌盐成功制备了薁取代的供体-受体聚甲炔、由1,6'-联薁单元组成的双薁、三薁和五薁。通过锌盐与几种胺反应,随后与丙二腈进行Knoevenagel反应来合成聚甲炔,产率适中至高(40-92%)。同时,锌盐与仲胺反应以及随后与环戊二烯离子进行连续缩合-环化反应,即所谓的齐格勒-哈夫纳方法,分别生成了相应的1,6'-联薁、1,6';3,6''-三薁和五薁。通过单晶X射线结构分析、紫外/可见光谱、伏安分析、光谱电化学和理论计算揭示了薁取代的供体-受体聚甲炔、双薁、三薁和五薁的结构、光学和电化学性质。这些结果表明,薁环上的取代基及其取代位置直接影响它们的反应活性、光学和电化学性质。

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