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Compact Roll-to-Roll Coater for in Situ X-ray Diffraction Characterization of Organic Electronics Printing

机译:紧凑型卷对卷涂布机,用于有机电子印刷的原位X射线衍射表征

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We describe a compact roll-to-roll (R2R) coater that is capable of tracking the crystallization process of semiconducting polymers during solution printing using X-ray scattering at synchrotron beamlines. An improved understanding of the morphology evolution during the solution processing of organic semiconductor materials during R2R coating processes is necessary to bridge the gap between "lab" and "fab". The instrument consists of a vacuum chuck to hold the flexible plastic substrate uniformly flat for grazing incidence X-ray scattering. The time resolution of the drying process that is achievable can be tuned by controlling two independent motor speeds, namely, the speed of the moving flexible substrate and the speed of the printer head moving in the opposite direction. With this novel design, we are able to achieve a wide range of drying time resolutions, from tens of milliseconds to seconds. This allows examination of the crystallization process over either fast or slow drying processes depending on coating conditions. Using regioregular poly(3-hexylthiophene-2,5-diyl) (P3HT) and phenyl-C61-butyric acid methyl ester (PCBM) inks based on two different solvents as a model system, we demonstrate the capability of our in situ R2R printing tool by observing two distinct crystallization processes for inks drying from the solvents with different boiling points (evaporation rates). We also observed delayed on-set point for the crystallization of P3HT polymer in the 1:1 P3HT/PCBM BHJ blend, and the inhibited crystallization of the P3HT during the late stage of the drying process.
机译:我们描述了一种紧凑的卷对卷(R2R)涂布机,该涂布机能够使用同步加速器光束线在X射线散射下跟踪溶液印刷过程中半导体聚合物的结晶过程。为了弥合“实验室”和“晶圆厂”之间的差距,需要对有机半导体材料在R2R涂层过程中进行固溶处理期间的形貌演变有更好的了解。该仪器由一个真空吸盘组成,可将柔性塑料基板均匀地保持平坦,以进行掠入射X射线散射。可以通过控制两个独立的电动机速度来调整干燥过程的时间分辨率,这两个电动机速度分别是移动的柔性基板的速度和沿相反方向移动的打印头的速度。通过这种新颖的设计,我们可以实现多种干燥时间分辨率,从几十毫秒到几秒。这允许根据涂覆条件在快干或慢干过程中检查结晶过程。使用基于两种不同溶剂的区域规则聚(3-己基噻吩-2,5-二基)(P3HT)和苯基-C61-丁酸甲酯(PCBM)油墨作为模型系统,我们证明了原位R2R印刷的能力通过观察两种不同的结晶过程使油墨从具有不同沸点(蒸发速率)的溶剂中干燥,从而实现了这一工具。我们还观察到了1:1 P3HT / PCBM BHJ共混物中P3HT聚合物结晶的延迟起始点,并且在干燥过程的后期抑制了P3HT的结晶。

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