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首页> 外文期刊>Scientific reports. >Injection-modulated polarity conversion by charge carrier density control via a self-assembled monolayer for all-solution-processed organic field-effect transistors
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Injection-modulated polarity conversion by charge carrier density control via a self-assembled monolayer for all-solution-processed organic field-effect transistors

机译:通过电荷载波密度控制通过用于全溶液处理的有机场效应晶体管的自组装单层的电荷载体密度控制的注射调制极性转换

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We demonstrated modulation of charge carrier densities in all-solution-processed organic field-effect transistors (OFETs) by modifying the injection properties with self-assembled monolayers (SAMs). The all-solution-processed OFETs based on an n-type polymer with inkjet-printed Ag electrodes were fabricated as a test platform, and the injection properties were modified by the SAMs. Two types of SAMs with different dipole direction, thiophenol (TP) and pentafluorobenzene thiol (PFBT) were employed, modifying the work function of the inkjet-printed Ag (4.9?eV) to 4.66?eV and 5.24?eV with TP and PFBT treatments, respectively. The charge carrier densities were controlled by the SAM treatment in both dominant and non-dominant carrier-channel regimes. This work demonstrates that control of the charge carrier densities can be efficiently achieved by modifying the injection property with SAM treatment; thus, this approach can achieve polarity conversion of the OFETs.
机译:我们通过用自组装单层(SAMS)来证明通过改变注射性能来调制全溶液处理的有机场效应晶体管(OFET)中的电荷载体密度。基于N型聚合物的全溶液加工的用喷墨印刷AG电极制成测试平台,并通过SAMS改变注射性能。采用两种具有不同偶极酚(TP)和五氟苯硫醇(PFBT)的SAM,改变喷墨印刷AG(4.9'eV)至4.66的工作函数和5.24Δev和PFBT治疗, 分别。电荷载体密度受到占主导地位和非主体渠道渠道制度的SAM处理。这项工作表明,通过使用SAM处理改变注射性能,可以有效地实现对电荷载体密度的控制;因此,这种方法可以实现OFETS的极性转换。

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