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Microstructural Control over Soluble Pentacene Deposited by Capillary Pen Printing for Organic Electronics

机译:有机电子毛细管笔印刷沉积的并五苯的微结构控制

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Research into printing techniques has received special attention for the commercialization of cost-efficient organic electronics. Here, we have developed a capillary pen printing technique to realize a large-area pattern array of organic transistors and systematically investigated self-organization behavior of printed soluble organic semiconductor ink. The capillary pen-printed deposits of organic semiconductor, 6,13-bis(triisopropylsilylethynyl) pentacene (TIPS_PEN), was well-optimized in terms of morphological and microstructural properties by using ink with mixed solvents of chlorobenzene (CB) and 1,2-dichlorobenzene (DCB). Especially, a 1:1 solvent ratio results in the best transistor performances. This result is attributed to the unique evaporation characteristics of the TIPS_PEN deposits where fast evaporation of CB induces a morphological evolution at tile initial printed position, and the remaining DCB with slow evaporation rate offers a favorable crystal evolution at the pinned position. Finally, a large-area transistor array was fadlely fabricated by drawing organic electrodes and active layers with a versatile capillary pen. Our approach provides an efficient printing technique for fabricating large-area arrays of organic electronics and further suggests a methodology to enhance their performances by microstructural control of the printed organic semiconducting deposits.
机译:对于具有成本效益的有机电子产品的商业化,印刷技术的研究受到了特别的关注。在这里,我们已经开发了一种毛细管笔印刷技术,以实现有机晶体管的大面积图案阵列,并系统地研究了印刷的可溶性有机半导体油墨的自组织行为。通过使用墨水与氯苯(CB)和1,2-的混合溶剂,对有机半导体的毛细管笔印沉积物6,13-​​双(三异丙基甲硅烷基乙炔基)并五苯(TIPS_PEN)的形态和微观结构性能进行了优化。二氯苯(DCB)。特别是,溶剂比为1:1时,晶体管性能最佳。此结果归因于TIPS_PEN沉积物的独特蒸发特性,其中CB的快速蒸发在瓷砖的初始印刷位置诱导了形态演变,而其余的DCB具有缓慢的蒸发速率在固定位置提供了有利的晶体演化。最后,通过使用通用毛细管笔绘制有机电极和有源层,大面积地制作了晶体管阵列。我们的方法为制造大面积有机电子阵列提供了一种有效的印刷技术,并进一步提出了一种通过对印刷的有机半导体沉积物进行微结构控制来增强其性能的方法。

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