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通过生物材料表面功能化实现的铟镓锌氧化物光薄膜晶体管增强型紫外光响应特性用于实时紫外监测

Enhanced Ultraviolet Photoresponse Characteristics of Indium Gallium Zinc Oxide Photo-Thin-Film Transistors Enabled by Surface Functionalization of Biomaterials for Real-Time Ultraviolet Monitoring.

作者信息

Yoo Seonggwang, Kim Da Som, Hong Woong-Ki, Yoo Jung Il, Huang Fu, Ko Heung Cho, Park Jung Hee, Yoon Jongwon

机构信息

School of Materials Science and Engineering, Gwangju Institute of Science and Technology, Gwangju 61005, Republic of Korea.

Division of Biotechnology, College of Environmental and Bioresources Sciences, Jeonbuk National University, Iksan, Jeollabuk-do 54596, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2021 Oct 13;13(40):47784-47792. doi: 10.1021/acsami.1c15565. Epub 2021 Sep 29.

Abstract

Indium gallium zinc oxide (IGZO) is one of the most promising materials for diverse optoelectronic applications based on thin-film transistors (TFTs) including ultraviolet (UV) photodetectors. In particular, the monitoring of UV-A (320-400 nm) exposure is very useful for healthcare applications because it can be used to prevent various human skin and eye-related diseases. However, the relatively weak optical absorption in the UV-A range and the persistent photoconductivity (PPC) arising from the oxygen vacancy-related states of IGZO thin films limit efficient UV monitoring. In this paper, we report the enhancement of the UV photoresponse characteristics of IGZO photo-TFTs by the surface functionalization of biomolecules on an IGZO channel. The biomaterial/IGZO interface plays a crucial role in enhancing UV-A absorption and suppressing PPC under negative gate bias, resulting in not only increased photoresponsivity and specific detectivity but also a fast and repeatable UV photoresponse. In addition, turning off the device without external bias completely eliminates PPC due to the internal electric field induced by the surface functionalization of biomaterials. Such a volatile feature of PPC enables the fast and repeatable UV photoresponse. These results suggest the potential of IGZO photo-TFTs combined with biomaterials for real-time UV monitoring.

摘要

铟镓锌氧化物(IGZO)是基于薄膜晶体管(TFT)的多种光电子应用中最具前景的材料之一,这些应用包括紫外(UV)光电探测器。特别是,对UV-A(320 - 400纳米)暴露的监测在医疗保健应用中非常有用,因为它可用于预防各种与人类皮肤和眼睛相关的疾病。然而,IGZO薄膜在UV-A范围内相对较弱的光吸收以及由与氧空位相关的状态引起的持续光电导(PPC)限制了有效的紫外线监测。在本文中,我们报告了通过在IGZO沟道上进行生物分子的表面功能化来增强IGZO光控TFT的紫外光响应特性。生物材料/IGZO界面在增强UV-A吸收和在负栅极偏压下抑制PPC方面起着关键作用,不仅导致光响应度和比探测率增加,而且还产生快速且可重复的紫外光响应。此外,在没有外部偏压的情况下关闭器件可完全消除由于生物材料表面功能化引起的内部电场导致的PPC。PPC的这种易失性特征实现了快速且可重复的紫外光响应。这些结果表明IGZO光控TFT与生物材料相结合用于实时紫外线监测的潜力。

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