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首页> 外文期刊>Chemistry, an Asian journal >Effectively Improving Extinction Coefficient of Benzodithiophene and Benzodithiophenedione-based Photovoltaic Polymer by Grafting Alkylthio Functional Groups
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Effectively Improving Extinction Coefficient of Benzodithiophene and Benzodithiophenedione-based Photovoltaic Polymer by Grafting Alkylthio Functional Groups

机译:通过嫁接烷硫基官能团有效提高苯并二噻吩和苯并二噻吩二酮基光伏聚合物的消光系数

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摘要

Alkylthio groups have received much attention in the polymer community for their molecular design applications in polymer solar cells. In this work, alkylthio substitution on the conjugated thiophene side chains in benzodithiophene (BDT) and benzodithiophenedione (BDD)based photovoltaic polymer was used to improve the extinction coefficient. The introduction of alkylthio groups into the polymer increased its extinction coefficient while the HOMO levels, bandgaps, and absorption bands remained the same. Thus, the short circuit current density (J(sc)) and the efficiency of the device were much better than those of the control device. Thus, introducing the alkylthio functional group in polymer is an effective method to tune the extinction coefficient of photovoltaic polymer. This provides a new path to improve photovoltaic performance without increasing active layer thickness, which will be very helpful to design advanced photovoltaic materials for high photovoltaic performance.
机译:烷硫基由于其在聚合物太阳能电池中的分子设计应用而在聚合物界引起了广泛关注。在这项工作中,基于苯并二噻吩(BDT)和基于苯并二噻吩二酮(BDD)的光伏聚合物中共轭噻吩侧链上的烷硫基取代被用来提高消光系数。在聚合物中引入烷硫基增加了消光系数,而HOMO能级,带隙和吸收带保持不变。因此,短路电流密度(J(sc))和设备的效率比控制设备的要好得多。因此,在聚合物中引入烷硫基官能团是调节光伏聚合物消光系数的有效方法。这提供了在不增加有源层厚度的情况下改善光伏性能的新途径,这对于设计用于实现高光伏性能的先进光伏材料将非常有帮助。

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