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首页> 外文期刊>International Journal of Polymer Science >Theoretical Study on the Photoelectric Properties of a Class of Copolymers Based on Benzodithiophene for Solar Cells
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Theoretical Study on the Photoelectric Properties of a Class of Copolymers Based on Benzodithiophene for Solar Cells

机译:基于苯二脱噻吩对太阳能电池的一类共聚物光电性能的理论研究

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摘要

The structural, electronic, and optical properties of PBDTTBT are comprehensively studied by density functional theory to rationalize the experimentally observed properties. Periodic boundary conditions method is employed to simulate the polymer block and calculate effective charge mass from the band structure calculation to describe charge transport properties. Moreover, both time-dependent density functional theory and a set of multidimensional visualization techniques are used to characterize the exciton dissociation ability in the PCBM: PBDTTBT interface. These theoretical methods and calculation techniques not only promote deep understanding of the connection between chemical structures and optical and electronic properties of the donor-acceptor system but also can be used to rationally design a novel donor-acceptor system. Based on the same calculated methods as PBDTTBT, four copolymers PBDTTTP, PBDTTTO, PBDTTTPD, and PBDTTFPD are designed to study their potentials as donors in polymer BHJ. The results indicate that PBDTTBT's well conjugation benefits its good stability, and its wide and strong absorption spectra in the range of visible light, appropriate FMO levels, well charge transport, and favorable exciton dissociation lead to its photovoltaic performance. Furthermore, through comparing the four designed polymers with PBDTTBT, we conclude that the four designed polymers have stronger exciton dissociation ability and larger open-circuit voltage and external quantum efficiencies. Consequently, the four designed copolymers are promising candidates for polymer BHJ solar cells.
机译:PBDTTBT的结构,电子和光学性质被密度泛函理论综合地研究,以合理化实验观察的性质。使用周期边界条件方法来模拟聚合物块并从带结构计算计算有效电荷质量以描述电荷传输性能。此外,两种时间依赖性密度泛函理论和一组多维可视化技术用于表征PCBM:PBDTTBT接口中的激子解离能力。这些理论方法和计算技术不仅促进了对供体 - 受体系统的化学结构和光学和电子性质之间的联系的深刻理解,而且可以用于合理设计一种新的供体受体系统。基于与PBDTTBT的相同计算的方法,四种共聚物PBDTTTP,PBDTTTO,PBDTTTPD和PBDTTTFPD旨在研究它们作为聚合物BHJ中供体的潜力。结果表明,PBDTTBT的井缀合物有利于其良好的稳定性,以及其宽且强的吸收光谱在可见光,适当的FMO水平,井充电运输和有利的激子解离导致其光伏性能范围内。此外,通过将四种设计的聚合物与PBDTTB进行比较,得出结论,四种设计的聚合物具有更强的激子解离能力和更大的开路电压和外部量子效率。因此,四种设计的共聚物是聚合物BHJ太阳能电池的承诺候选者。

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