首页> 外文OA文献 >Systematic Tuning of 2,1,3-Benzothiadiazole Acceptor Strength by Monofunctionalization with Alkylamine, Thioalkyl, or Alkoxy Groups in Carbazole Donor-Acceptor Polymers
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Systematic Tuning of 2,1,3-Benzothiadiazole Acceptor Strength by Monofunctionalization with Alkylamine, Thioalkyl, or Alkoxy Groups in Carbazole Donor-Acceptor Polymers

机译:在咔唑供体 - 受体聚合物中通过单烷基胺,硫代烷基或烷氧基单官能化系统调节2,1,3-苯并噻二唑受体强度

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摘要

A simple route to the preparation of alkylamine, thioalkyl, and alkoxy monofunctionalized 4,7-di(thiophen-2-yl)-2,1,3-benzothiadiazole) based monomers is reported from a common fluorinated precursor. Copolymerization with a carbazole comonomer under Suzuki conditions yielded a series of analogous donor–acceptor copolymers in which the only difference was the nature of the heteroatom (N, O, or S) on the benzothiadiazole core. This was shown to have a significant impact on the wavelength and intensity of the intramolecular charge transfer (ICT) absorption peak due to a combination of electronic and steric factors. Substantial differences were also observed in the solar cell performance of blends with PC71BM, with the octylamino substituted polymer exhibiting significantly lower performance than the other two polymers. This polymer also exhibited a reversible change in the optical spectra upon exposure to acid, suggesting potential as a sensing material.
机译:从常见的氟化前体中报告了一种简单的制备烷基胺,硫代烷基和烷氧基单官能化4,7-二(噻吩-2-基)-2,1,3-苯并噻二唑基单体的途径。在铃木条件下与咔唑共聚单体的共聚反应产生了一系列类似的供体-受体共聚物,其中唯一的区别是苯并噻二唑核心上的杂原子(N,O或S)的性质。由于电子和空间因素的结合,这显示出对分子内电荷转移(ICT)吸收峰的波长和强度有重大影响。还观察到与PC71BM的共混物在太阳能电池性能方面存在显着差异,辛基氨基取代的聚合物的性能明显低于其他两种聚合物。该聚合物在暴露于酸中后还表现出可逆的光谱变化,表明它具有作为传感材料的潜力。

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