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关于苊啶-咔唑-噻吩单体对形成多维大分子与稳定π-二聚体状态的反应性的电化学和光谱电化学研究。

Electrochemical and Spectroelectrochemical Studies on the Reactivity of Perimidine-Carbazole-Thiophene Monomers towards the Formation of Multidimensional Macromolecules versus Stable π-Dimeric States.

作者信息

Czichy Malgorzata, Janasik Patryk, Wagner Pawel, Officer David L, Lapkowski Mieczyslaw

机构信息

Faculty of Chemistry, Silesian University of Technology, M. Strzody 9, 44-100 Gliwice, Poland.

ARC Centre of Excellence for Electromaterials Science and the Intelligent Polymer Research Institute, University of Wollongong, Wollongong, NSW 2519, Australia.

出版信息

Materials (Basel). 2021 Apr 23;14(9):2167. doi: 10.3390/ma14092167.

Abstract

During research on cross-linked conducting polymers, double-functionalized monomers were synthesized. Two subunits potentially able to undergo oxidative coupling were used-perimidine and, respectively, carbazole, 3,6-di(hexylthiophene)carbazole or 3,6-di(decyloxythiophene)carbazole; alkyl and alkoxy chains as groups supporting molecular ordering and 14-benzo[4,5]isoquinone[2,1-a]perimidin-14-one segment promoting CH⋯O interactions and π-π stacking. Electrochemical, spectroelectrochemical, and density functional theory (DFT) studies have shown that potential-controlled oxidation enables polarization of a specific monomer subunit, thus allowing for simultaneous coupling via perimidine and/or carbazole, but mainly leading to dimer formation. The reason for this was the considerable stability of the dicationic and tetracationic π-dimers over covalent bonding. In the case of perimidine-3,6-di(hexylthiophene)carbazole, the polymer was not obtained due to the steric hindrance of the alkyl substituents preventing the coupling of the monomer radical cations. The only linear π-conjugated polymer was obtained through di(decyloxythiophene)carbazole segment from perimidine-di(decyloxythiophene)-carbazole precursor. Due to the significant difference in potentials between subsequent oxidation states of monomer, it was impossible to polarize the entire molecule, so that both directions of coupling could be equally favored. Subsequent oxidation of this polymer to polarize the side perimidine groups did not allow further crosslinking, because rather the π-π interactions between these perimidine segments dominate in the solid product.

摘要

在对交联导电聚合物的研究过程中,合成了双功能单体。使用了两种可能发生氧化偶联的亚基——苝啶以及咔唑、3,6 - 二(己基噻吩)咔唑或3,6 - 二(癸氧基噻吩)咔唑;烷基和烷氧基链作为支持分子有序排列的基团,以及1,4 - 苯并[4,5]异喹啉[2,1 - a]苝啶 - 1,4 - 二酮片段促进CH⋯O相互作用和π - π堆积。电化学、光谱电化学和密度泛函理论(DFT)研究表明,电位控制的氧化能够使特定单体亚基极化,从而允许通过苝啶和/或咔唑同时偶联,但主要导致二聚体形成。其原因是二价阳离子和四价阳离子π - 二聚体相对于共价键具有相当高的稳定性。对于苝啶 - 3,6 - 二(己基噻吩)咔唑,由于烷基取代基的空间位阻阻止了单体自由基阳离子的偶联,未能得到聚合物。唯一的线性π - 共轭聚合物是通过苝啶 - 二(癸氧基噻吩) - 咔唑前体中的二(癸氧基噻吩)咔唑片段获得的。由于单体后续氧化态之间的电位存在显著差异,无法使整个分子极化,因此两种偶联方向都可能同样受到青睐。该聚合物随后氧化以使侧链苝啶基团极化,但不允许进一步交联,因为在固体产物中这些苝啶片段之间的π - π相互作用占主导地位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/63f4/8122979/100f74a5f070/materials-14-02167-sch001.jpg

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