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首页> 外文期刊>RSC Advances >Branched and linear A(2)-D-A(1)-D-A(2) isoindigo-based solution-processable small molecules for organic field-effect transistors and solar cells
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Branched and linear A(2)-D-A(1)-D-A(2) isoindigo-based solution-processable small molecules for organic field-effect transistors and solar cells

机译:支链和线性A(2)-D-A(1)-D-A(2)基于异靛蓝的溶液可处理小分子,用于有机场效应晶体管和太阳能电池

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摘要

To establish a correlation between the molecular structure, physicochemical properties, thin film morphology, charge carrier mobility and photovoltaic performance of isoindigo-based electron donor type molecular semiconductors, a series of branched and linear A(2)-D-A(1)-D-A(2) small molecules (A = acceptor, D = donor) are synthesized. The extended p-conjugated molecular chromophores have an electron-accepting isoindigo core, a bridging oligothiophene electron donor part and terminal octyl cyanoacrylate acceptor moieties. Their photophysical, thermal and electrochemical properties are analysed and the materials are applied in organic field-effect transistors and bulk heterojunction organic solar cells. Compared to an analogous benzothiadiazole-based small molecule, the isoindigo core deepens the HOMO energy level, enabling higher open-circuit voltages in organic solar cells. The linear isoindigo-based small molecule shows an enhanced hole mobility compared to the branched derivatives. The best power conversion efficiency of the investigated set is also obtained for the solar cell based on the linear (CA-3T-IID-3T-CA-l) donor molecule in combination with PC71BM.
机译:要建立基于靛蓝的电子给体型分子半导体的分子结构,理化性质,薄膜形态,电荷载流子迁移率和光伏性能之间的相关性,一系列支链和线性A(2)-DA(1)-DA( 2)合成了小分子(A =受体,D =供体)。延伸的p-共轭分子发色团具有电子接受异靛蓝核心,桥连的低聚噻吩电子给体部分和末端氰基丙烯酸辛酯受体部分。分析了它们的光物理,热和电化学性质,并将这些材料应用于有机场效应晶体管和体异质结有机太阳能电池。与类似的基于苯并噻二唑的小分子相比,isoindigo核加深了HOMO能级,从而使有机太阳能电池具有更高的开路电压。与支链衍生物相比,线性的基于靛蓝的小分子显示出增强的空穴迁移率。基于线性(CA-3T-IID-3T-CA-1)供体分子与PC71BM的组合,对于太阳能电池,也可以获得研究组的最佳功率转换效率。

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