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Printed organic thin-film transistor-based integrated circuits

机译:基于印刷有机薄膜晶体管的集成电路

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Organic electronics is moving ahead on its journey towards reality. However, this technology will only be possible when it is able to meet specific criteria including flexibility, transparency, disposability and low cost. Printing is one of the conventional techniques to deposit thin films from solution-based ink. It is used worldwide for visual modes of information, and it is now poised to enter into the manufacturing processes of various consumer electronics. The continuous progress made in the field of functional organic semiconductors has achieved high solubility in common solvents as well as high charge carrier mobility, which offers ample opportunity for organic-based printed integrated circuits. In this paper, we present a comprehensive review of all-printed organic thin-film transistor-based integrated circuits, mainly ring oscillators. First, the necessity of all-printed organic integrated circuits is discussed; we consider how the gap between printed electronics and real applications can be bridged. Next, various materials for printed organic integrated circuits are discussed. The features of these circuits and their suitability for electronics using different printing and coating techniques follow. Interconnection technology is equally important to make this product industrially viable; much attention in this review is placed here. For high-frequency operation, channel length should be sufficiently small; this could be achievable with a combination of surface treatment-assisted printing or laser writing. Registration is also an important issue related to printing; the printed gate should be perfectly aligned with the source and drain to minimize parasitic capacitances. All-printed organic inverters and ring oscillators are discussed here, along with their importance. Finally, future applications of all-printed organic integrated circuits are highlighted.
机译:有机电子正在朝着现实的方向前进。但是,只有在能够满足特定标准(包括灵活性,透明性,可处置性和低成本)的情况下,该技术才有可能实现。印刷是从溶液基油墨沉积薄膜的常规技术之一。它已在全球范围内用于可视化的信息模式,现在已准备好进入各种消费电子产品的制造过程。功能性有机半导体领域的不断发展已实现了在普通溶剂中的高溶解度以及高的载流子迁移率,这为有机基印刷集成电路提供了充足的机会。在本文中,我们对基于全印刷有机薄膜晶体管的集成电路(主要是环形振荡器)进行了全面综述。首先,讨论了全印刷有机集成电路的必要性。我们考虑如何弥合印刷电子产品与实际应用之间的差距。接下来,讨论用于印刷有机集成电路的各种材料。这些电路的特性及其对使用不同印刷和涂层技术的电子产品的适用性如下。互连技术对于使该产品具有工业可行性同样重要。在这篇评论中很多关注都放在这里。对于高频操作,通道长度应足够小;结合表面处理辅助打印或激光写入可以实现此目的。登记也是与印刷有关的重要问题。印刷栅极应与源极和漏极完美对齐,以最大程度地减小寄生电容。本文讨论了全印刷有机反相器和环形振荡器及其重要性。最后,重点介绍了全印刷有机集成电路的未来应用。

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