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Printed Organic and Inorganic Electronics: Devices To Systems

机译:印刷有机和无机电子:设备到系统

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摘要

Affordable and versatile printed electronics can play a critical role for large area applications, such as for displays, sensors, energy harvesting, and storage. Significant advances including commercialization in the general area of printed electronics have been based on organic molecular electronics. Still some fundamental challenges remain: thermal instability, modest charge transport characteristics, and limited lithographic resolution. In the last decade, one-dimensional nanotubes and nanowires, like carbon nanotubes and silicon nanowires, followed by two-dimensional materials, like graphene and transitional dichalcogenide materials, have shown interesting promise as next-generation printed electronic materials. Challenges, such as non-uniformity in growth, limited scalability, and integration issues, need to be resolved for the viable application of these materials to technology. Recently, the concept of printed high-performance complementary metal-oxide semiconductor electronics has also emerged and been proven successful for application to electronics. Here, we review progress in CMOS technology and applications, including challenges faced and opportunities revealed.
机译:价格合理且用途广泛的印刷电子产品对于大面积应用(例如显示器,传感器,能量收集和存储)可以发挥关键作用。基于有机分子电子学,包括在印刷电子学的一般领域中的商业化在内的重大进展。仍然存在一些基本挑战:热不稳定性,适度的电荷传输特性和有限的光刻分辨率。在过去的十年中,一维纳米碳管和纳米线(例如碳纳米管和硅纳米线)以及紧随其后的二维材料(例如石墨烯和过渡二卤化碳材料)已经显示出作为下一代印刷电子材料的有趣前景。为了将这些材料切实地应用于技术,需要解决诸如增长不均匀,可扩展性有限以及集成问题之类的挑战。最近,印刷高性能互补金属氧化物半导体电子学的概念也出现了,并被证明可以成功应用于电子学。在这里,我们回顾了CMOS技术和应用的进展,包括面临的挑战和发现的机遇。

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