首页> 外文期刊>RSC Advances >Optoelectronic properties of oligomers based on tetrazine, benzothiadiazole, benzodithiophene and thiophene moieties for photovoltaic applications: a theoretical study
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Optoelectronic properties of oligomers based on tetrazine, benzothiadiazole, benzodithiophene and thiophene moieties for photovoltaic applications: a theoretical study

机译:基于四嗪,苯并噻二唑,苯并二噻吩和噻吩基团的低聚物的光电性能:理论研究

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摘要

Herein, a theoretical design addressed to the synthesis of new conjugated co-polymers for organic photovoltaic devices based on tetrazine, benzothiadiazole, dithiophene and thiophene moieties has been applied. This theoretical investigation aims to explore which combination of these molecules could be the most promising for photovoltaic applications, by studying their intrinsic electronic properties. In particular, the simulated values of the band gap energy and the open circuit voltage are the parameters to be taken into account for the selection of potential materials for solar cell devices. The results shows that the most suitable combination, giving rise to low band gaps, higher absorption coefficients and with an interesting offset of the HOMO and LUMO energy levels, is the bridge-linked copolymer which alternates the benzodithiophene and the benzothiadiazole moieties, likely because of their push-pull effect.
机译:本文中,已经针对基于四嗪,苯并噻二唑,二噻吩和噻吩部分的用于有机光伏装置的新型共轭共聚物的合成进行了理论设计。这项理论研究旨在通过研究它们的内在电子特性,探索这些分子的哪种组合最适合光伏应用。特别地,带隙能量和开路电压的模拟值是在选择太阳能电池装置的潜在材料时要考虑的参数。结果表明,最合适的组合是产生低带隙,更高的吸收系数,并且具有有趣的HOMO和LUMO能级补偿的桥联共聚物,它交替出现苯并二噻吩和苯并噻二唑部分,可能是由于他们的推挽效果。

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