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Solution processable low bandgap thienoisoindigo-based small molecules for organic electronic devices

机译:适用于有机电子设备的可处理的低带隙硫杂异靛蓝小分子溶液

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Two donor-acceptor conjugated small molecules that consist of thienoisoindigo as an acceptor unit and benzofuran or naphthalene as a donor building block have been synthesized via a Suzuki coupling reaction. The small molecules, TII(BFu)(2) and TII(Na)(2), exhibit broad and near-infrared absorption in the range of 500-900 nm while their absorption maxima locate at around 620 nm in films. Optical band gaps calculated from the solid state absorption cutoff value are 1.49 eV for TII(BFu)(2) and 1.53 eV for TII(Na)(2), respectively. These small molecules possess p-channel charge transport characteristics when used as the active semiconductor in organic thin-film transistors (OFETs). The highest hole mobilities of 1.28 x 10(-3) cm(2) V-1 s(-1) for TII(BFu)(2) and 1.29 x 10(-3) cm(2) V-1 s(-1) for TII(Na)(2) have been achieved in top-contact-bottom-gate OFET devices. The preliminary characterization of bulk heterojunction photovoltaic devices consisting of small molecules and PC71BM yield power conversion efficiencies (PCE) of 1.24% for TII(BFu)(2) and 1.04% for TII(Na)(2). Moreover, the relationships between the semiconductor devices performance and film morphology, and energy levels are discussed.
机译:已经通过Suzuki偶联反应合成了由硫代异靛蓝作为受体单元和苯并呋喃或萘作为供体构件的两个供体-受体共轭的小分子。 TII(BFu)(2)和TII(Na)(2)小分子在500-900 nm的范围内显示宽广和近红外吸收,而它们的最大吸收在薄膜中位于620 nm左右。根据固态吸收截止值计算得出的光学带隙,对于TII(BFu)(2)为1.49 eV,对于TII(Na)(2)为1.53 eV。这些小分子在有机薄膜晶体管(OFET)中用作有源半导体时,具有p沟道电荷传输特性。 TII(BFu)(2)和1.29 x 10(-3)cm(2)V-1 s(-)的最高空穴迁移率是1.28 x 10(-3)cm(2)V-1 s(-1) TII(Na)(2)的1)已在顶部接触底栅OFET设备中实现。由小分子和PC71BM组成的本体异质结光伏器件的初步表征,对于TII(BFu)(2)的功率转换效率(PCE)为1.24%,对于TII(Na)(2)的功率转换效率为1.04%。此外,讨论了半导体器件性能与薄膜形态以及能级之间的关系。

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