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Local carrier dynamics in organic thin film transistors investigated by time- resolved Kelvin probe force microscopy

机译:时间分辨开尔文探针力显微镜研究有机薄膜晶体管中的局部载流子动力学

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摘要

Understanding the relationship between the microscopic structures and the carrier transport properties in organic electronic materials is of fundamental interest to exploit the potential of the materials and thus to realize highly efficient organic devices. In this study, carrier ejection processes in polycrystalline organic thin film transistors are investigated by time-resolved Kelvin probe force microscopy (tr-KPFM) that is capable of visualizing time evolution of the surface potential triggered by the application of a voltage pulse with a temporal resolution of 3 ms. The obtained tr-KPFM images show that the spatial distribution of the diffusing charge carriers is mostly non-homogeneous, reflecting the complex resistivity distribution in the channel region formed by the crystalline grains. The trapped charges in some grains diffuse to the electrodes on a time scale of several tens of milliseconds due to the low contact resistance of the grain boundaries, while most of the trapped charges diffuse on a time scale of hundreds of milliseconds.
机译:理解有机电子材料的微观结构与载流子传输特性之间的关系,对于开发材料的潜力并从而实现高效的有机器件至关重要。在这项研究中,通过时间分辨开尔文探针力显微镜(tr-KPFM)研究了多晶有机薄膜晶体管中的载流子喷射过程,该过程能够可视化施加电压脉冲并随时间变化而触发的表面电势的时间演化。分辨率为3µms。所获得的tr-KPFM图像表明,扩散电荷载流子的空间分布大多是不均匀的,反映了由晶粒形成的沟道区域中的复电阻率分布。由于晶粒边界的低接触电阻,一些晶粒中的俘获电荷以几十毫秒的时间尺度扩散到电极,而大多数俘获的电荷以数百毫秒的时间尺度扩散。

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