首页> 外文期刊>Coatings >Optical, Electrochemical, Thermal, and Structural Properties of Synthesized Fluorene/Dibenzosilole-Benzothiadiazole Dicarboxylic Imide Alternating Organic Copolymers for Photovoltaic Applications
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Optical, Electrochemical, Thermal, and Structural Properties of Synthesized Fluorene/Dibenzosilole-Benzothiadiazole Dicarboxylic Imide Alternating Organic Copolymers for Photovoltaic Applications

机译:用于光伏应用的光学,电化学,热和结构性能的合成芴/二苯并硼酮 - 苯并噻唑二甲基酰亚胺交替有机共聚物

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In this work, four donor–acceptor copolymers, PFDTBTDI-DMO, PFDTBTDI-8, PDBSDTBTDI-DMO, and PDBSDTBTDI-8, based on alternating 2,7-fluorene or 2,7-dibenzosilole flanked by thienyl units, as electron-donor moieties and benzothiadiazole dicarboxylic imide (BTDI) as electron-accepting units, have been designed and synthesized for photovoltaic applications. All polymers were synthesized in good yields via Suzuki polymerization. The impact of attaching two different alkyl chains (3,7-dimethyloctyl vs. n-octyl) to the BTDI units upon the solubilities, molecular weights, optical and electrochemical properties, and thermal and structural properties of the resulting polymers was investigated. PFDTBTDI-8 has the highest number average molecular weight (Mn = 24,900 g·mol?1) among all polymers prepared. Dibenzosilole-based polymers have slightly lower optical band gaps relative to their fluorene-based analogues. All polymers displayed deep-lying HOMO levels. Their HOMO energy levels are unaffected by the nature of either the alkyl substituents or the donor moieties. Similarly, the LUMO levels are almost identical for all polymers. All polymers exhibit excellent thermal stability with Td exceeding 350 °C. X-ray powder diffraction (XRD) studies have shown that all polymers have an amorphous nature in the solid state.
机译:在这项工作中,基于由噻吩基单元侧翼的交替的2,7-芴或2,7-二苯并啉酮,四种供体 - 受体共聚物,PFDTBTDI-DMO,PFDTBTDI-8,PDBSDTBTDI-DMO-8作为电子供体为光伏应用设计和合成了作为电子接受单元的部分和苯并噻唑二羧酸酰亚胺(BTDI)。通过铃木聚合,将所有聚合物合成良好的产率。研究了将两种不同的烷基链(3,7-二甲基乙烯基乙烯基乙基)在溶解度,分子量,光学和电化学性能下与BTDI单元连接到BTDI单元的影响,以及所得聚合物的热和结构性质。在制备的所有聚合物中,PFDTBTDI-8的数均分子量最高(Mn = 24,900g·mol→1)。基于二苯并醇基聚合物的光带间隙略低于其芴基类似物。所有聚合物都显示出深躺的同性恋水平。它们的同性能水平不受烷基取代基或供体部分的性质的影响。类似地,所有聚合物几乎相同的LUMO水平。所有聚合物具有优异的热稳定性,Td超过350℃。 X射线粉末衍射(XRD)研究表明,所有聚合物都具有固态的无定形性质。

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