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Synthesis of new alternating conjugated copolymers consisting of tetrazine/carbazole or tetrazine/fluorene derivatives along with thiophene spacers for photovoltaic applications

机译:合成由四嗪/咔唑或四嗪/芴衍生物与噻吩间隔基组成的新型交替共轭共聚物,用于光伏应用

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摘要

In order to investigate the relationships between chemical structures of conjugated polymers and their properties with respect to photovoltaic applications, two new copolymers consisting of an electron-deficient tetrazine unit and either an electron-rich carbazole (PCTz) or fluorene (PFTz) along with thiophene spacers were synthesized. The estimated electrochemical bandgap and HOMO level of PCTz and PFTz were 2.23/-5.32 eV and 2.48/-5.60 eV, respectively. PCTz had a very high absorption coefficient, which was even higher than poIy(3-hexyltiophene) in chloroform solution. The bulk heterojunction photovoltaic devices fabricated using PCTz and [6,6]-phenyl-C_(71) -butyric acid methyl ester had a high open-circuit voltage (1.0 V) under AM 1.5 G illumination at 100 mW/cm~2 with a power conversion efficiency of 2.13%.
机译:为了研究共轭聚合物的化学结构与其性质之间在光伏应用方面的关系,两种新的共聚物由缺电子的四嗪单元和富电子咔唑(PCTz)或芴(PFTz)以及噻吩组成合成了间隔基。估计的PCTz和PFTz的电化学带隙和HOMO水平分别为2.23 / -5.32 eV和2.48 / -5.60 eV。 PCTz具有很高的吸收系数,甚至比氯仿溶液中的聚(3-己基噻吩)还高。使用PCTz和[6,6]-苯基-C_(71)-丁酸甲酯制造的整体异质结光伏器件在100 mW / cm〜2的AM 1.5 G光照下具有高开路电压(1.0 V)。功率转换效率为2.13%。

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