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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Interface engineering in high-performance low-voltage organic thin-film transistors based on 2,7-dialkyl-[1]benzothieno[3,2- b ][1]benzothiophenes
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Interface engineering in high-performance low-voltage organic thin-film transistors based on 2,7-dialkyl-[1]benzothieno[3,2- b ][1]benzothiophenes

机译:基于2,7-二烷基-[1]苯并噻吩并[3,2-b] [1]苯并噻吩的高性能低压有机薄膜晶体管的接口工程

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摘要

We investigated two different (2,7-dialkyl-[1]benzothieno[3,2-b][1] benzothiophenes; C_n-BTBT-C_n, where n = 12 or 13) semiconductors in low-voltage operating thin-film transistors. By choosing functional molecules in nanoscaled hybrid dielectric layers, we were able to tune the surface energy and improve device characteristics, such as leakage current and hysteresis. The dipolar nature of the self-assembled molecules led to a shift in the threshold voltage. All devices exhibited high charge carrier mobilities of 0.6-7.0 cm~2 V~(-1) s~(-1). The thin-film morphology of BTBT was studied by means of atomic force microscopy (AFM), presented a dependency upon the surface energy of the self-assembled monolayer (SAM) hybrid dielectrics but not upon the device performance. The use of C_(13)-BTBT-C_(13) on hybrid dielectrics of AlO_x and a F_(15)C_(18)-phosphonic acid monolayer led to devices with a hole mobility of 1.9 cm~2 V~(-1) s~(-1) at 3 V, on/off ratio of 10~5, small device-device variation of mobility, and a threshold voltage of only -0.9 V, thus providing excellent characteristics for further integration.
机译:我们研究了低压工作薄膜晶体管中的两种不同的(2,7-二烷基-[1]苯并噻吩并[3,2-b] [1]苯并噻吩; C_n-BTBT-C_n,其中n = 12或13)半导体。通过在纳米级混合介电层中选择功能分子,我们能够调节表面能并改善器件特性,例如漏电流和磁滞。自组装分子的偶极性质导致阈值电压发生偏移。所有器件均表现出0.6-7.0 cm〜2 V〜(-1)s〜(-1)的高载流子迁移率。通过原子力显微镜(AFM)研究了BTBT的薄膜形态,该薄膜形态与自组装单层(SAM)混合电介质的表面能有关,但与器件性能无关。在AlO_x和F_(15)C_(18)-膦酸单层的混合电介质上使用C_(13)-BTBT-C_(13)导致器件的空穴迁移率为1.9 cm〜2 V〜(-1) )s〜(-1)在3 V时,开/关比为10〜5,器件间的迁移率变化很小,阈值电压仅为-0.9 V,因此为进一步集成提供了出色的特性。

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