基于三苯胺-噻吩酰亚胺的D-A-D共轭分子及其制备方法和应用技术

技术编号:8101928 阅读:197 留言:0更新日期:2012-12-20 04:24
本发明专利技术涉及一类基于三苯胺为给体(D),噻吩酰亚胺为受体(A)的D-A-D共轭分子及其制备方法,以及该类分子作为活性层给体材料在有机太阳能电池(OPV)中的应用。本发明专利技术的基于三苯胺-噻吩酰亚胺的D-A-D共轭分子可溶液法加工且具有较好的太阳光捕获能力、空穴传输能力和热稳定性,是有机太阳能电池的理想材料。其具有以下通式结构:。

【技术实现步骤摘要】

本专利技术涉及一类基于三苯胺为给体(D),噻吩酰亚胺为受体(A)的D-A-D共轭分子及其制备方法,以及该类分子作为活性层给体材料在有机太阳能电池(OPV)中的应用。
技术介绍
有机半导体材料由于其良好的光学及电学性能,已经成为有机电子学研究的重要内容,用它们制成的器件与传统的无机半导体器件相比,具有如下几个优点低成 本、柔性、重量轻、可大面积制备等。基于这些优点,人们对有机电子学的研究抱有极大的兴趣。近年来,有机太阳能电池(OPV)的研究发展非常迅速,为使有机活性层材料的吸收光谱与太阳发射光谱相匹配,实现较高的光电转换效率,人们通过研究分析已经设计合成出大量的太阳能电池材料,包括聚合物材料(X. Zhan, D. Zhu, “ConjugatedPolymers for High-Efficiency Organic Photovoltaics”,Polym. Chem.,2010,1,409 ;Y. Shirota, H. Kageyama,“Charge Carrier Transporting Molecular Materials andTheir Applications in Devices,,,Chem. Rev.,2007,107,953 ;S. Giines,H. Neugebauer,N. S. Sariciftci,“Conjugated Polymer-Based Organic Solar Cells”,Chem. Rev.,2007,107,1324 ;J. Chen,Y.Cao,“Development of Novel Conjugated Donor Polymersfor High-Efficiency Bulk-Heterojunction Photovoltaic Devices,,,Acc. Chem. Res.,2009,42,1709 ;B.C.Thompson,J. M. J. Frechet, uPolymer-Fullerene Composite SolarCells”,Angew. Chem. Int. Ed.,2008,47,58 ;J. Hou, H-Y. Chen, S. Zhang, G. Li,Y. Yang,“Synthesis, Characterization, and Photovoltaic Properties of a Low Band GapPolymer Based on Silole-Containing Polythiophenes and 2,1,3-Benzothiadiazole,,,J. Am. Chem. Soc. 2008,130,16144 ;D. Miihlbacher, M. Scharber, M. Morana, Z. Zhu,D. Waller, R. Gaudiana, C. Brabec,“High Photovoltaic Performance of a Low-BandgapPolymer,,,Adv. Mater. 2006,18,2884 ;H_Y. Chen, J. Hou,S. Zhang, Y. Liang, G. Yang,Y.Yang,L.Yu,Y.Wu,G. Li,“Polymer solar cells with enhanced open-circuitvoltage and efficiency”,Nature Photonics,2009,3,649.)及小分子材料(H. Shang,H. Fan, Y. Liu, W. Hu, Y. Li, X.Zhan,‘‘A Solution-Processable Star-Shaped Moleculefor High-Performance Organic Solar Cells”,Adv. Mater. ,2011, 23,1554 ;B.Walker,A.B. Tamayo, X. Dang, P. Zalar, J. H. Seo,A. Garcia,M. Tantiwiwat, T. Nguyen, ‘‘NanoscalePhase Separation and High Photovoltaic Efficiency in Solution-Processed,Small-Molecule Bulk Heterojunction Solar Cells”,Adv. Funct. Mater.,2009,19,3063 ;S. Roquet,A. Cravino,P. Leriche,0. Aleveque, P. Frere, J. Roncali, uTriphenylamine-Thienylenevinylene Hybrid Systems with Internal Charge Transfer as Donor Materialsfor Heterojunction Solar Cells”,J. Am. Chem.Soc. ,2006,128,3459 ;A. Cravino,S. Roquet,P. Leriche,0. Aleveque,P. Frere,J. Roncali,“A star-shaped triphenylamineJi -conjugated system with internalcharge-transfer as donor material forhe ter o-junction solar cells,,,Chem. Commun.,2006,1416 ;H. Shang, H. Fan, Q. Shi,S. Li,Y. Li,X. Zhan,“Solution ProcessableD-A-D Molecules for Efficient OrganicSolar CelIs”,Sol. Energy Mater. Sol. Cells,2010,94,457 ;H. Fan, H. Shang, Y. Li,X. Zhan,“Efficiency enhancement insmall molecule bulk heterojunction organicsolar cells via additive”,Appl. Phys. Lett.,2010,97,133302 ;A. W. Hains,Z. Liang,M. A. Woodhouse, B. A. Gregg,“Molecular semiconductors in organic photovoltaiccells”,Chem. Rev.,2010,110,6689 ;J. Roncali,“Molecular bulk heterojunctions anemerging approach to organic solar cells”,Acc. Chem. Res.,2009,42,1719 ;B. Walker,C. Kim,T.-Q. Nguyen, Smal I molecule solution-processed bulk hetero junctio本文档来自技高网...

【技术保护点】
一种基于三苯胺?噻吩酰亚胺的D?A?D共轭分子,其特征是,所述的基于三苯胺?噻吩酰亚胺的D?A?D共轭分子具有以下通式结构:A为碳碳单键、双键或三键;n为0?6;R1~R4独立的为氢、C1?C30烷基或C1?C30烷氧基。FDA0000067947930000011.tif

【技术特征摘要】

【专利技术属性】
技术研发人员:占肖卫林禹泽程沛赵鑫刚刘瑶
申请(专利权)人:中国科学院化学研究所
类型:发明
国别省市:

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