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Development of a Simple Manufacturing Process for All-Inkjet Printed Organic Thin Film Transistors and Circuits

机译:开发全喷墨印刷有机薄膜晶体管和电路的简单制造工艺

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摘要

In the last years there has been a growing interest in the realization of low-cost, flexible and large area electronic systems such as item-level RFID tags, flexible displays or smart labels, among others. Specifically, inkjet printing technology has been increasingly applied as advanced deposition technology in the field of printed electronics due to the high flexibility in terms of patterns (mask-less) and materials, and its low cost approach as only a small amount of materials is required in comparison to other solution-based deposition techniques. Our work focuses on the development of Organic Thin Film Transistors (OTFTs) by using organic, inorganic inks and low-cost all-inkjet purely printing process, thus centring the effort in the design, manufacturing and characterization point of view in order to fabricate all-inkjet printed organic integrated circuits. Electrical and morphological characterizations were performed in order to obtain device statistics to investigate the origins of the failures responsible for the low yields. Most of research works are based on laboratory inkjet equipment for manufacturing using single nozzle systems to fabricate small numbers of devices. The variability and mismatch of the printed devices are underrepresented in literature and are key factors towards commercialization of printed electronics.
机译:在过去的几年中,人们对实现低成本,柔性和大面积电子系统(例如物品级RFID标签,柔性显示器或智能标签等)的兴趣日益浓厚。具体地,由于在图案(无掩模)和材料方面的高度灵活性,以及​​由于仅需要少量材料的低成本方法,喷墨印刷技术已被越来越多地用作印刷电子领域中的先进沉积技术。与其他基于溶液的沉积技术相比。我们的工作重点是通过使用有机,无机墨水和低成本的全喷墨纯印刷工艺开发有机薄膜晶体管(OTFT),从而将精力集中在设计,制造和表征的观点上,以制造出所有-喷墨印刷有机集成电路。进行了电气和形态学表征,以便获得设备统计数据,以调查造成低良率的失败原因。大多数研究工作都是基于实验室喷墨设备进行的,该设备使用单喷嘴系统制造少量设备。印刷设备的可变性和不匹配性在文献中并未得到充分体现,并且是印刷电子产品商业化的关键因素。

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