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Origin of stress and enhanced carrier transport in solution-cast organic semiconductor films

机译:溶液流延有机半导体薄膜中应力的起源和增强的载流子传输

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摘要

Molecular packing in laterally directed solution deposition is a strong function of variables such as printing speed, substrate temperature, and solution concentration. Knowledge of the ordering mechanisms impacts on the development of new processes and materials for improved electronic devices. Here, we present real-time synchrotron x-ray scattering results combined with optical video microscopy, revealing the stages of ordering during the deposition of organic thin films via hollow capillary writing. Limited long range ordering is observed during the initial crystallization, but it gradually develops over 3–4 s for a range of deposition conditions. Buckling of thin films is typically observed for deposition above room temperature. We infer that compressive stress originates from thermal transients related to solvent evaporation on timescales similar to the development of long range ordering. Under optimized conditions, elimination of cracks and other structural defects significantly improves the average charge carrier mobility in organic field-effect transistors.
机译:横向定向溶液沉积中的分子堆积是变量的强大功能,例如印刷速度,基材温度和溶液浓度。订购机制的知识会影响改进电子设备的新工艺和材料的开发。在这里,我们介绍了实时同步加速器X射线散射结果与光学视频显微镜的结合,揭示了通过空心毛细管写入有机薄膜沉积过程中的有序阶段。在初始结晶过程中观察到有限的长程有序,但在一定范围的沉积条件下,它在3-4 s内逐渐发展。通常观察到在室温以上沉积时薄膜会弯曲。我们推断出,压缩应力源自与溶剂蒸发有关的热瞬态,其时间尺度与长程有序发展相似。在优化条件下,消除裂纹和其他结构缺陷可显着提高有机场效应晶体管的平均载流子迁移率。

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