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Exploring Silver Contact Morphologies in Printed Carbon Nanotube Thin-Film Transistors

机译:探索印刷碳纳米管薄膜晶体管中的银接触形态

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Demand for ubiquitous and flexible electronics to facilitate the rapid growth of Internet- of- Things (IoT) technologies has driven the advancement of printed electronics for low-cost and high-throughput manufacturing. The carbon nanotube thin-film transistor (CNT-TFT) is one of the most promising options for printed electronics due to its mechanical flexibility, compatibility with low-temperature fabrication, and relatively high mobility [1]. Meanwhile, Ag nanoparticles remain the most widely used conductive material in printed inks due to their superb dispersion stability, high conductivity, and relatively low cost [2]. However, limited studies have explored the impact of different printed metallic contacts in CNT-TFTs [3], even though the contact interfaces are one of the leading factors limiting performance. In this work, the impact of Ag contact morphology is studied for the first time by fabricating hundreds of CNT-TFTs using an aerosol jet printer to systematically investigate three morphologies (nanoparticle (NP), nanoflake (NF), and nanowire (NW), as seen in Fig. 1) and their impact on device performance. Using what is learned from the contact morphology results, the first CNT-TFTs printed without removal of the substrate from the printer (full “print-in-place” additive devices) are also demonstrated.
机译:为了促进物联网(IoT)技术的快速发展,对无处不在的灵活电子产品的需求推动了低成本和高通量制造的印刷电子产品的发展。碳纳米管薄膜晶体管(CNT-TFT)由于其机械柔韧性,与低温制造的兼容性以及相对较高的迁移率而成为印刷电子领域最有希望的选择之一[1]。同时,由于银纳米颗粒具有出色的分散稳定性,高电导率和相对较低的成本,它们仍是印刷油墨中使用最广泛的导电材料[2]。然而,尽管接触界面是限制性能的主要因素之一,但是有限的研究已经探索了CNT-TFT中不同印刷金属接触的影响[3​​]。在这项工作中,首次通过使用气溶胶喷射打印机制造数百种CNT-TFT来研究Ag接触形态的影响,以系统地研究三种形态(纳米粒子(NP),纳米薄片(NF)和纳米线(NW),如图1所示)及其对设备性能的影响。使用从接触形态学结果中学到的知识,还展示了在不从打印机上移走基板的情况下进行打印的第一批CNT-TFT(完整的“就地打印”添加装置)。

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