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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Processing a pyridyl-based polymeric additive for improved photovoltaic performance of a wide-bandgap pi-conjugated polymer
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Processing a pyridyl-based polymeric additive for improved photovoltaic performance of a wide-bandgap pi-conjugated polymer

机译:加工吡啶基聚合物添加剂以改善宽带隙π共轭聚合物的光伏性能

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摘要

In this manuscript we introduced a novel conjugated polymeric additive PBTA-Py with benzodithiophene-alt- benzo[1,2,3] triazole as the backbone and polar pyridyl as the terminal group of the side chains. Relative to its polymeric counterpart that consists of the same main chain but a non-polar alkyl side chain, the resulting PBTA-Py exhibits quite comparable absorption and electrochemical properties and significantly improved surface energy. Of particular interest is that, by incorporating a certain amount of PBTA-Py as a polymeric additive into the bulk-heterojunction film of pristine polymer PBTA-BO and PC71BM, the power conversion efficiency was obviously enhanced from 4.96% to 6.48% primarily by virtue of the improved current density. The improved current density can be attributed to the slightly increased hole mobility as revealed by the space charge limited current model. Furthermore X-ray photoelectron spectra confirm the formation of the supramolecular interaction of the nitrogen atom with the electron-deficient PC71BM, leading to increased charge transfer in the bulk-heterojunction layer. These observations, in combination with the formation of more favorable phase separation morphology, demonstrate the great promise of developing polymeric additives for improving the photovoltaic performance of polymer solar cell devices.
机译:在本手稿中,我们介绍了一种新型共轭聚合物添加剂PBTA-Py,其中苯并二噻吩-alt-苯并[1,2,3]三唑为骨架,极性吡啶基为侧链的末端基团。相对于由相同主链但非极性烷基侧链组成的聚合物对应物,所得的PBTA-Py表现出相当可比的吸收和电化学性质,并显着提高了表面能。特别令人感兴趣的是,通过将一定量的PBTA-Py作为聚合物添加剂掺入原始聚合物PBTA-BO和PC71BM的本体-异质结薄膜中,功率转换效率明显地从4.96%提高到6.48%,主要是因为改善的电流密度。电流密度的提高可归因于空间电荷受限电流模型所揭示的空穴迁移率的略微提高。此外,X射线光电子能谱证实了氮原子与缺电子的PC71BM形成了超分子相互作用,从而导致了体异质结层中电荷转移的增加。这些观察结果与更有利的相分离形态的形成相结合,证明了开发用于改善聚合物太阳能电池装置的光伏性能的聚合物添加剂的巨大前景。

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