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Mobility of charge carriers in self-assembled monolayers

机译:自组装单层中载流子的迁移性

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摘要

We present a new approach to study charge transport within 2D layers of organic semi-conductors (OSCs) using atomic force microscopy (AFM)-based lithography applied to self-assembled monolayers (SAMs), fabricated from appropriate organothiols. The extent of lateral charge transport was investigated by insulating pre-defined patches within OSC-based SAMs with regions of insulating SAM made from large band gap alkanethiolates. The new method is demonstrated using a phenyl-linked anthracenethiolate (PAT), 4-(anthracene-2-ylethynyl)benzyl thiolate. – characteristics of differently shaped PAT-islands were measured using the AFM tip as a top electrode. We were able to determine a relationship between island size and electrical conductivity, and from this dependence, we could obtain information on the lateral charge transport and charge carrier mobility within the thin OSC layers. Our study demonstrates that AFM nanografting of appropriately functionalized OSC molecules provides a suitable method to determine intrinsic mobilities of charge carriers in OSC thin films. In particular, this method is rather insensitive with regard to influence of grain boundaries and other defects, which hamper the application of conventional methods for the determination of mobilities in macroscopic samples.
机译:我们提出了一种新的方法来研究有机半导体(OSC)的2D层内的电荷传输,方法是使用原子力显微镜(AFM)基于平版印刷的光刻技术,该光刻技术适用于由适当的有机硫醇制备的自组装单层(SAM)。通过绝缘基于OSC的SAM中的预定义贴片和由大带隙链烷硫醇盐制成的绝缘SAM区域来研究横向电荷传输的程度。使用苯基连接的蒽硫醚盐(PAT),4-(蒽-2-基乙炔基)苄基硫醇盐证明了该新方法。 –使用AFM尖端作为顶部电极,测量了不同形状的PAT岛的特性。我们能够确定岛尺寸和电导率之间的关系,并且从这种依赖性中,我们可以获得薄OSC层内的横向电荷传输和电荷载流子迁移率的信息。我们的研究表明,适当功能化的OSC分子的AFM纳米接枝提供了确定OSC薄膜中载流子固有迁移率的合适方法。特别地,该方法对于晶界和其他缺陷的影响相当不敏感,这妨碍了常规方法在宏观样品中测定迁移率的应用。

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