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溶液处理的低分子量扩展芳基乙炔:用于场效应晶体管和体异质结太阳能电池的通用 p 型半导体。

Solution-processable low-molecular weight extended arylacetylenes: versatile p-type semiconductors for field-effect transistors and bulk heterojunction solar cells.

机构信息

Department of Chemistry, the Argonne-Northwestern Solar Energy Research Center, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208-3113, USA.

出版信息

J Am Chem Soc. 2010 May 5;132(17):6108-23. doi: 10.1021/ja910420t.

Abstract

We report the synthesis and characterization of a series of five extended arylacetylenes, 9,10-bis-{[m,p-bis(hexyloxy)phenyl]ethynyl}-anthracene (A-P6t, 1), 9,10-bis-[(p-{[m,p-bis(hexyloxy) phenyl]ethynyl}phenyl)ethynyl]-anthracene (PA-P6t, 2), 4,7-bis-{[m,p-bis(hexyloxy)phenyl]ethynyl}-2,1,3-benzothiadiazole (BTZ-P6t, 5), 4,7-bis(5-{[m,p-bis(hexyloxy)phenyl]ethynyl}thien-2-yl)-2,1,3-benzothiadiazole (TBTZ-P6t, 6), and 7,7'-({[m,p-bis(hexyloxy)phenyl]ethynyl}-2,1,3-benzothiadiazol-4,4'-ethynyl)-2,5-thiophene (BTZT-P6t, 7), and two arylvinylenes, 9,10-bis-{(E)-[m,p-bis(hexyloxy)phenyl]vinyl}-anthracene (A-P6d, 3), 9,10-bis-[(E)-(p-{(E)-[m,p-bis(hexyloxy)phenyl]vinyl}phenyl)vinyl]-anthracene (PA-P6d, 4). Trends in optical absorption spectra and electrochemical redox processes are first described. Next, the thin-film microstructures and morphologies of films deposited from solution under various conditions are investigated, and organic field-effect transistors (OFETs) and bulk heterojunction photovoltaic (OPV) cells fabricated. We find that substituting acetylenic for olefinic linkers on the molecular cores significantly enhances device performance. OFET measurements reveal that all seven of the semiconductors are FET-active and, depending on the backbone architecture, the arylacetylenes exhibit good p-type mobilities (mu up to approximately 0.1 cm(2) V(-1) s(-1)) when optimum film microstructural order is achieved. OPV cells using [6,6]-phenyl C(61)-butyric acid methyl ester (PCBM) as the electron acceptor exhibit power conversion efficiencies (PCEs) up to 1.3% under a simulated AM 1.5 solar irradiation of 100 mW/cm(2). These results demonstrate that arylacetylenes are promising hole-transport materials for p-channel OFETs and promising donors for organic solar cells applications. A direct correlation between OFET arylacetylene hole mobility and OPV performance is identified and analyzed.

摘要

我们报告了一系列五个扩展芳基乙炔的合成和表征,9,10-双-{[m,p-双(己氧基)苯基]乙炔基}-蒽(A-P6t,1),9,10-双-[(p-{[m,p-双(己氧基)苯基]乙炔基}苯基)乙炔基]-蒽(PA-P6t,2),4,7-双-{[m,p-双(己氧基)苯基]乙炔基}-2,1,3-苯并噻二唑(BTZ-P6t,5),4,7-双(5-{[m,p-双(己氧基)苯基]乙炔基}噻吩-2-基)-2,1,3-苯并噻二唑(TBTZ-P6t,6)和 7,7'-({[m,p-双(己氧基)苯基]乙炔基}-2,1,3-苯并噻二唑-4,4'-乙炔基)-2,5-噻吩(BTZT-P6t,7)和两个芳基乙烯基,9,10-双-{(E)-[m,p-双(己氧基)苯基]乙烯基}-蒽(A-P6d,3),9,10-双-[(E)-(p-{(E)-[m,p-双(己氧基)苯基]乙烯基}苯基)乙烯基]-蒽(PA-P6d,4)。首先描述了光学吸收光谱和电化学氧化还原过程中的趋势。接下来,研究了在不同条件下从溶液中沉积的薄膜的微结构和形态,并制造了有机场效应晶体管(OFET)和体异质结光伏(OPV)电池。我们发现,在分子核心上将烯键替换为炔键可显著提高器件性能。OFET 测量表明,所有七种半导体都是 FET 活性的,并且取决于骨架结构,当最佳薄膜微观结构有序度达到时,芳基乙炔表现出良好的 p 型迁移率(高达约 0.1 cm(2) V(-1) s(-1))。使用[6,6]-苯基 C(61)-丁酸甲酯(PCBM)作为电子受体的 OPV 电池在模拟 AM 1.5 太阳辐照度为 100 mW/cm(2)下的功率转换效率(PCE)高达 1.3%。这些结果表明,芳基乙炔是 p 沟道 OFET 的有前途的空穴传输材料,也是有机太阳能电池应用的有前途的供体。确定并分析了 OFET 芳基乙炔空穴迁移率与 OPV 性能之间的直接相关性。

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