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基于靛蓝的受体型小分子:合成、电化学及光电表征

Indigo-Based Acceptor Type Small Molecules: Synthesis, Electrochemical and Optoelectronic Characterizations.

作者信息

Saltan Gözde Murat, Kıymaz Deniz Aykut, Zafer Ceylan, Dinçalp Haluk

机构信息

Department of Chemistry, Faculty of Arts and Science, Manisa Celal Bayar University, Yunus Emre, 45140, Manisa, Turkey.

Solar Energy Institute, Ege University, Bornova, 35100, Izmir, Turkey.

出版信息

J Fluoresc. 2018 Sep;28(5):1239-1249. doi: 10.1007/s10895-018-2287-3. Epub 2018 Aug 30.

Abstract

In this paper, we report design and synthesis of novel low bandgap small molecules, indigo-benzimidazole (Tyr-3) and indigo-schiff base (Tyr-4) type acceptors. In these structures, tert-butoxycarbonyl (t-BOC) group has been attached to indigo nitrogen atom in order to increase the solubility. UV-vis absorption spectra of Tyr-3 and Tyr-4 dyes exhibit wide absorption bands ranging from 350 to 600 nm, indicating the relatively low bandgap giving around 2.07 eV for each. Excitation of both Tyr-3 and Tyr-4 dyes at 485 nm displays characteristic emission features of indigo moiety and also intramolecular charge transfer complex (ICT) related with their subunits. Besides increasing fluorescence quantum yields as compared to model compound, biexponential decay times for fluorescence life times were also obtained for Tyr-3 and Tyr-4 dyes. Their appropriate energy levels along with low HOMO levels are desired for light harvesting acceptors for organic solar cells when blended with poly[N-9'-heptadecanyl-2,7-carbazole-alt-5,5-(4,7-di-2-thienyl-2',1',3'-benzothiadiazole] (PCDTBT) as donor polymer. Photovoltaic behavior of the synthesized dyes were examined in bulk heterojunction concept and achieved photovoltaic conversion efficiencies were discussed.

摘要

在本文中,我们报道了新型低带隙小分子靛蓝 - 苯并咪唑(Tyr - 3)和靛蓝 - 席夫碱(Tyr - 4)型受体的设计与合成。在这些结构中,叔丁氧羰基(t - BOC)基团连接到靛蓝氮原子上以提高溶解度。Tyr - 3和Tyr - 4染料的紫外 - 可见吸收光谱显示出350至600 nm的宽吸收带,表明其带隙相对较低,每种染料的带隙约为2.07 eV。在485 nm处激发Tyr - 3和Tyr - 4染料,显示出靛蓝部分的特征发射特征以及与其亚基相关的分子内电荷转移复合物(ICT)。与模型化合物相比,除了提高荧光量子产率外,还获得了Tyr - 3和Tyr - 4染料的双指数荧光寿命衰减时间。当与聚[N - 9'-十七烷基 - 2,7 - 咔唑 - 交替 - 5,5 - (4,7 - 二 - 2 - 噻吩基 - 2',1',3'-苯并噻二唑](PCDTBT)作为供体聚合物混合时,它们合适的能级以及较低的最高占据分子轨道(HOMO)能级对于有机太阳能电池光捕获受体是理想的。在本体异质结概念中研究了合成染料的光伏行为,并讨论了实现的光伏转换效率。

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