基于不同结构的单栅极OTFTs:展望与挑战

A. Pal, B. Kumar, G. Tripathi
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引用次数: 0

摘要

基于有机薄膜晶体管的器件是近几十年来电子元件设计领域迅速兴起的技术趋势和研究热点。这是由于它们的柔性电子应用的潜力,易于制造和低成本的设计主要是各种柔性电子器件和电路。本文重点分析了单栅极有机薄膜晶体管(OTFTs)的性能,分析了基于先进OTFT结构的各种性能参数,这些参数与OTFT各层中使用的有机半导体(OSC)材料相一致。并五苯、P3HT、P3OT等OSC材料被用作otft的活性层。现有OTFT技术节点面临的主要挑战是提高其性能参数,如亚阈值斜率、通断电流比、迁移率、电压摆动和噪声裕度,以设计和制造具有高可靠性和鲁棒性的高速有机电路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single gate based different structures of OTFTs: Prospective and challenges
Organic thin film transistor based devices are rapidly emerging technology trend in the area of electronics components design and becoming popular area of research in last decades. This is due to their potential of flexible electronics applications, ease of fabrication and low cost in designing of mainly various flexible electronics devices and circuits. This paper focuses towards the performance analysis of single gate-organic-thin-film transistors (OTFTs) on the basis of various performance parameters that is based on advanced OTFT structures in accord with used organic-semiconductor (OSC) materials in individual layers of OTFT. The OSC materials such as pentacene, P3HT, P3OT and many more are used as active layers in fabrication of OTFTs. The major challenges associated with the available OTFT technology nodes are the enhancement of their performance parameters such as subthreshold slope, on-off current ratio, mobility, voltage swing and noise margin to design and fabricate high speed organic circuits along with high reliability and robustness.
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