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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Comparing random and regular diketopyrrolopyrrole-bithiophene-thienopyrrolodione terpolymers for organic photovoltaics
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Comparing random and regular diketopyrrolopyrrole-bithiophene-thienopyrrolodione terpolymers for organic photovoltaics

机译:比较用于有机光伏的无规和规则的二酮吡咯并吡咯-联噻吩-噻吩并吡咯二酮三元共聚物

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摘要

Isomeric random and regular alternating π-conjugated terpolymers comprising diketopyrrolopyrrole (DPP), thienopyrrolodione (TPD), and bithiophene (2T) were synthesized to study the effect of the sequential distribution of monomeric units on the semiconducting properties. The optical and electrochemical properties and the performance in photovoltaic cells of the random and regular terpolymers are found to be significantly different. DPP2T-rich sections in the random terpolymer cause higher HOMO and deeper LUMO energy levels and a smaller optical band gap compared to the regular terpolymer. The randomization of DPP and TPD units along the chain has a negative effect on the photovoltaic performance, resulting in power conversion efficiencies of merely 1.0% for the random terpolymer while a more favorable efficiency of 5.3% is obtained for the regular terpolymer when combined with a fullerene acceptor.
机译:合成了由二酮吡咯并吡咯(DPP),噻吩并吡咯二酮(TPD)和联噻吩(2T)组成的同构无规和规则交替的π共轭三元共聚物,以研究单体单元顺序分布对半导体性能的影响。发现无规和规则三元共聚物的光学和电化学性质以及在光伏电池中的性能显着不同。与常规三元共聚物相比,无规三元共聚物中富含DPP2T的部分导致更高的HOMO和更深的LUMO能级以及更小的光学带隙。 DPP和TPD单元沿链的随机化对光伏性能产生负面影响,导致无规三元共聚物的功率转换效率仅为1.0%,而常规三元共聚物与三元共聚物组合使用时,则可获得5.3%的更佳效率。富勒烯受体。

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