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Improved performance of inkjet-printed Ag source/drain electrodes for organic thin-film transistors by overcoming the coffee ring effects

机译:通过克服咖啡环效应,改善了用于有机薄膜晶体管的喷墨印刷Ag源/漏电极的性能

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Inkjet printing is a promising technology for the scalable fabrication of organic electronics because of the material conservation and facile patterning as compared with other solution processing techniques. In this study, we have systematically investigated the cross-sectional profile control of silver (Ag) electrode via inkjet printing. A facile methodology for achieving inkjet-printed Ag source/drain with improved profiles is developed. It is demonstrated that the printing conditions such as substrate temperature, drop spacing and printing layers affect the magnitude of the droplet deposition and the rate of evaporation, which can be optimized to greatly reduce the coffee ring effects for improving the inkjet-printed electrode profiles. Ag source/drain electrodes with uniform profiles were successfully inkjet-printed and incorporated into organic thin-film transistors (OTFTs). The resulting devices showed superior electrical performance than those without special treatments. It is noted to mention that the strategy for modulating the inkjet-printed Ag electrodes in this work does not demand the ink formulation or complicated steps, which is beneficial for scaling up the printing techniques for potential large-area/mass manufacturing.
机译:喷墨印刷是一种有希望的技术,可用于可伸缩的有机电子产品,因为与其他解决方案加工技术相比,材料保守和容易的图案化。在本研究中,我们通过喷墨印刷系统地研究了银(Ag)电极的横截面轮廓控制。开发了用于实现具有改进型材的喷墨印刷AG源/漏极的容易方法。结果证明,诸如衬底温度,下降间隔和印刷层的印刷条件影响液滴沉积的大小和蒸发速率,这可以优化,从而大大减少用于改善喷墨印刷电极型材的咖啡环效果。具有均匀型材的AG源/漏电极被成功喷墨印刷并掺入有机薄膜晶体管(OTFT)中。所得到的装置显示出优于特殊处理的电气性能。值得注意的是,在该工作中调制喷墨印刷AG电极的策略不需要油墨配方或复杂的步骤,这有利于缩放潜在大面积/大众制造的印刷技术。

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