首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Low Bandgap pi-Conjugated Copolymers Based on Fused Thiophenes and Benzothiadiazole: Synthesis and Structure-Property Relationship Study
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Low Bandgap pi-Conjugated Copolymers Based on Fused Thiophenes and Benzothiadiazole: Synthesis and Structure-Property Relationship Study

机译:熔融噻吩和苯并噻二唑的低带隙π共轭共聚物:合成与结构-性能关系研究

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摘要

A series of low bandgap conjugated polymers consisting of benzothiadiazole alternating with dithienothiophene (DTT) or dithienopyrrole (DTP) unit with or without 3-alkylthiophene bridge have been synthesized. Effect of the fused rings and 3-alkylthiophene bridge on the thermal, optical, electrochemical, charge transport, and photovoltaic properties of these polymers have been investigated. These polymers show broad absorption extending from 300 to 1000 nm with optical bandgaps as low as 1.2 eV; the details of which can be varied either by incorporating 3-alkylthiophene bridge or by replacing DTT with DTP. The LUMO levels (-2.9 to -3.3 eV) are essentially unaffected by the specific choice of donor moiety, whereas the HOMO levels (-4.6 to -5.6 eV) are more sensitive to the choice of donor. The DTT and DTP polymers with 3-alkylthiophene bridge were found to exhibit hole mobilities of 8 x 10(-5) and 3 x 10(-2) cm(2) V-1 s(-1), respectively, in top-contact organic field-effect transistors. Power conversion efficiencies in the range 0.17-0.43% were obtained under simulated AM 1.5, 100 mW cm(-2) irradiation for polymer solar cells using the DTT and DTP-based polymers with 3-alkylthiophene bridge as donor and fullerene derivatives as acceptor.
机译:合成了由苯并噻二唑与二噻吩并噻吩(DTT)或二噻吩并吡咯(DTP)单元交替组成的,具有或不具有3-烷基噻吩桥的一系列低带隙共轭聚合物。已经研究了稠合环和3-烷基噻吩桥对这些聚合物的热,光学,电化学,电荷传输和光伏性质的影响。这些聚合物显示出从300到1000 nm的宽吸收范围,光学带隙低至1.2 eV。其细节可以通过结合3-烷基噻吩桥或通过用DTP代替DTT来改变。 LUMO水平(-2.9至-3.3 eV)基本上不受供体部分特定选择的影响,而HOMO水平(-4.6至-5.6 eV)对供体的选择更敏感。发现带有3-烷基噻吩桥的DTT和DTP聚合物的顶部迁移率分别为8 x 10(-5)和3 x 10(-2)cm(2)V-1 s(-1)。接触有机场效应晶体管。使用DTT和DTP基聚合物,以3-烷基噻吩桥作为供体,富勒烯衍生物作为受体,在模拟AM 1.5、100 mW cm(-2)辐照下的聚合物太阳能电池下,获得的功率转换效率在0.17-0.43%的范围内。

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