首页> 外文期刊>ACS applied materials & interfaces >Solution-Processable Quinoidal Dithioalkylterthiophene-Based Small Molecules Pseudo-Pentathienoacenes via an Intramolecular S center dot center dot center dot S Lock for High-Performance n-Type Organic Field-Effect Transistors
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Solution-Processable Quinoidal Dithioalkylterthiophene-Based Small Molecules Pseudo-Pentathienoacenes via an Intramolecular S center dot center dot center dot S Lock for High-Performance n-Type Organic Field-Effect Transistors

机译:溶液 - 加工Quinoidal烷基硫代噻吩基小分子通过分子内S中心点中心点中心点S锁进行高性能N型有机场效应晶体管

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A new organic small-molecule family comprising tetracyanoquinodimethane-substituted quinoidal dithioalky(SR)terthiophenes (DSTQs) (DSTQ-6 (1); SR = SC6H13, DSTQ : 10 (2); SR = SC10H21, DSTQ14 (3); SR = SC10H21) was synthesized and contrasted with a nonthioalkylated analogue (DRTQ14 (4); R = C14H29). The physical, electrochemical, and electrical properties of these new compounds are thoroughly investigated. Optimized geometries obtained from density functional theory calculations and single-crystal X-ray diffraction reveal the planarity of the SR-containing DSTQ core. DSTQs pack in a slipped pi-pi stacked two-dimensional arrangement, with a short intermolecular stacking distance of 3.55 A and short intermolecular S center dot center dot center dot N contacts of 3.56 angstrom. Thin-film morphological analysis by grazing incident X-ray diffraction reveals that all DSTQ molecules are packed in an edge-on fashion on the substrate. The favorable molecular packing, the high core planarity, and very low lowest unoccupied molecular orbital (LUMO) energy level (-4.2 eV) suggest that DSTQs could be electron-transporting semiconductors. Organic field-effect transistors based on solution-sheared DSTQ : 14 exhibit the highest electron mobility of 0.77 cm(2) V-1 s(-1) with good ambient stability, which is the highest value reported to date for such a solution process terthiophene-based small molecular semiconductor. These results demonstrate that the device performance of solution-sheared DSTQs can be improved by side chain engineering.
机译:一种新的有机小分子家族,包含四环喹啉二甲甲烷取代的奎因德喹喔啉(SR)萜烯(DSTQs)(DSTQ-6(1); SR = SC6H13,DSTQ:10(2); SR = SC10H21,DSTQ14(3); SR = SC10H21)合成并与非烷基化类似物(DRTQ14(4); R = C14H29)对比。彻底研究了这些新化合物的物理,电化学和电性能。从密度函数理论计算中获得的优化几何形状和单晶X射线衍射显示含SR的DSTQ核心的平面性。 DSTQS包装以滑动的PI-PI堆叠二维装置,短分子堆叠距离为3.55 A和短分子的S中心点中心点中心点N触点为3.56埃。通过放牧入射X射线衍射薄膜形态学分析表明,所有DSTQ分子都在基板上以边缘方式包装。有利的分子包装,高芯平面度和非常低的未占用分子轨道(LumO)能级(-4.2eV)表明DSTQ可以是电子传输的半导体。基于溶液剪切的DSTQ的有机场效应晶体管:14具有0.77cm(2)V-1 S(-1)的最高电子迁移率,具有良好的环境稳定性,这是迄今为止迄今为止的最高值的最高值基于Terthiophene的小分子半导体。这些结果表明,侧链工程可以提高解决方案剪切DSTQ的器件性能。

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