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Significant improvement of optoelectronic and photovoltaic properties by incorporating thiophene in a solution-processable D–A–D modular chromophore

机译:通过将噻吩掺入溶液可加工的D–A–D模块化生色团中,可以显着改善光电和光伏性能

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摘要

Through the incorporation of a thiophene functionality, a novel solution-processable small organic chromophore was designed, synthesized and characterized for application in bulk-heterojunction solar cells. The new chromophore, (2Z,2′Z)-2,2′-(1,4-phenylene)bis(3-(5-(4-(diphenylamino)phenyl)thiophen-2-yl)acrylonitrile) (coded as AS2), was based on a donor–acceptor–donor (D–A–D) module where a simple triphenylamine unit served as an electron donor, 1,4-phenylenediacetonitrile as an electron acceptor, and a thiophene ring as the π-bridge embedded between the donor and acceptor functionalities. AS2 was isolated as brick-red, needle-shaped crystals, and was fully characterized by 1H- and 13C-NMR, IR, mass spectrometry and single crystal X-ray diffraction. The optoelectronic and photovoltaic properties of AS2 were compared with those of a structural analogue, (2Z,2′Z)-2,2′-(1,4-phenylene)bis(3-(4-(diphenylamino)phenyl)-acrylonitrile) (AS1). Benefiting from the covalent thiophene bridges, compared to AS1 thin solid film, the AS2 film showed: (1) an enhancement of light-harvesting ability by 20%; (2) an increase in wavelength of the longest wavelength absorption maximum (497 nm vs. 470 nm) and (3) a narrower optical band-gap (1.93 eV vs. 2.17 eV). Studies on the photovoltaic properties revealed that the best AS2-[6,6]-phenyl-C61-butyric acid methyl ester (PC61BM)-based device showed an impressive enhanced power conversion efficiency of 4.10%, an approx. 3-fold increase with respect to the efficiency of the best AS1-based device (1.23%). These results clearly indicated that embodiment of thiophene functionality extended the molecular conjugation, thus enhancing the light-harvesting ability and short-circuit current density, while further improving the bulk-heterojunction device performance. To our knowledge, AS2 is the first example in the literature where a thiophene unit has been used in conjunction with a 1,4-phenylenediacetonitrile accepting functionality to extend the π-conjugation in a given D–A–D motif for bulk-heterojunction solar cell applications.
机译:通过并入噻吩官能团,设计,合成和表征了一种新型的可溶液加工的小型有机发色团,用于体异质结太阳能电池。新的生色团(2Z,2'Z)-2,2'-(1,4-亚苯基)双(3-(5-(4-(4-(二苯基氨基)苯基)噻吩-2-基)丙烯腈)(编码为AS2),基于供体-受体-供体(DA-D)模块,其中一个简单的三苯胺单元用作电子供体,1,4-苯二乙腈作为电子受体,噻吩环作为π桥嵌入在供体和受体功能之间。 AS2分离为砖红色,针状晶体,并通过1H和13C-NMR,IR,质谱和单晶X射线衍射进行了全面表征。比较了AS2的光电性能和结构类似物(2Z,2'Z)-2,2'-(1,4-亚苯基)双(3-(4-(二苯基氨基)苯基)-丙烯腈)(AS1)。与AS1固态薄膜相比,得益于共价噻吩桥,AS2薄膜显示:(1)集光能力提高了20%; (2)最长波长吸收最大值的波长增加(497 nm对470 nm),(3)光学带隙更窄(1.93 eV对2.17 eV)。对光伏性能的研究表明,最好的基于AS2- [6,6]-苯基-C61-丁酸甲酯(PC61BM)的器件显示出令人印象深刻的4.10%的提高的功率转换效率。与基于AS1的最佳设备的效率相比,提高了三倍(1.23%)。这些结果清楚地表明,噻吩官能度的实施方案扩展了分子共轭,从而增强了光收集能力和短路电流密度,同时进一步改善了体异质结器件的性能。据我们所知,AS2是文献中的第一个例子,其中噻吩单元与1,4-苯二乙腈结合使用,具有一定的功能,可以扩展给定D–A–D基序中的π共轭,以用于体-异质结太阳能电池。单元应用。

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