Hwang Yooji, Hwang Young Hyun, Choi Kwang Wook, Lee Seungwon, Kim Soojin, Park Soo Jong, Ju Byeong-Kwon
Display and Nanosystem Laboratory, School of Electrical Engineering, Korea University, 145, Anam-ro, Seoul, 02841, Republic of Korea.
Sci Rep. 2021 May 18;11(1):10499. doi: 10.1038/s41598-021-88730-6.
The need for photodetectors in various fields has gradually emerged, and several studies in this area are therefore being conducted. For photodetectors to be used in various environments, their transparency, flexibility, and durability must be ensured. However, the development of flexible photodetectors based on the current measurement techniques of conventional photodetectors has been difficult owing to the limitations of semiconductor materials. In this study, a new type of flexible and transparent capacitive photodetector was fabricated to address the shortcomings of conventional photodetectors. In addition, by introducing graphene electrodes to a new type of manufactured photodetector, devices with excellent overall chemical, thermal, and mechanical durability have been developed. Compared to photodetectors based on pristine Ag nanowire (AgNW) electrodes, AgNW/graphene hybrid electrode-based photodetectors exhibit a 20% higher photosensitivity. Also, the hybrid AgNW/graphene electrode on the dielectric layer exhibited low sheet resistance (~ 8 Ω/sq) and relatively high transmittance (~ 45%).
各个领域对光电探测器的需求逐渐显现,因此该领域正在开展多项研究。为使光电探测器能在各种环境中使用,必须确保其透明度、柔韧性和耐用性。然而,由于半导体材料的局限性,基于传统光电探测器当前测量技术的柔性光电探测器的开发一直很困难。在本研究中,制造了一种新型柔性透明电容式光电探测器,以解决传统光电探测器的缺点。此外,通过将石墨烯电极引入新型制造的光电探测器中,开发出了具有优异整体化学、热和机械耐久性的器件。与基于原始银纳米线(AgNW)电极的光电探测器相比,基于AgNW/石墨烯混合电极的光电探测器的光敏性高20%。而且,介电层上的AgNW/石墨烯混合电极表现出低方块电阻(约8Ω/sq)和相对较高的透射率(约45%)。