Carbonyl-to-Alkyne Electron Donation Effects in up to 10-nm-Long, Unimolecular Oligo(p-phenylene ethynylenes).

Organic Materials Pub Date : 2021-01-01 Epub Date: 2021-06-18 DOI:10.1055/s-0041-1730899
Sinu C Rajappan, Olav Vestrheim, Mona Sharafi, Jianing Li, Severin T Schneebeli
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引用次数: 0

Abstract

We synthesized some of the longest unimolecular oligo(p-phenylene ethynylenes) (OPEs), which are fully substituted with electron-withdrawing ester groups. An iterative convergent/divergent (a.k.a. iterative exponential growth - IEG) strategy based on Sonogashira couplings was utilized to access these sequence-defined macromolecules with up to 16 repeating units and 32 ester substituents. The carbonyl groups of the ester substituents interact with the triple bonds of the OPEs, leading to (i) unusual, angled triple bonds with increased rotational barrier, (ii) enhanced conformational disorder, and (iii) associated broadening of the UV/Vis absorption spectrum. Our results demonstrate that fully air-stable, unimolecular OPEs with ester groups can readily be accessed with IEG chemistry, providing new macromolecular backbones with unique geometrical, conformational, and photophysical properties.

Abstract Image

长达10nm的单分子低聚对苯基乙烯中的羰基对炔电子赋能效应。
我们合成了一些最长的单分子低聚(对亚苯基乙炔)(OPEs),它们被吸电子酯基团完全取代。基于Sonogashira偶联的迭代收敛/发散(又称迭代指数增长-IEG)策略被用于获得这些具有多达16个重复单元和32个酯取代基的序列定义的大分子。酯取代基的羰基与OPE的三键相互作用,导致(i)具有增加的旋转势垒的不寻常的倾斜三键,(ii)增强的构象无序,以及(iii)相关的UV/Vis吸收光谱的加宽。我们的结果表明,具有酯基的完全空气稳定的单分子OPE可以很容易地通过IEG化学获得,从而提供具有独特几何、构象和光物理性质的新的大分子主链。
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
3.70
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