Dao Lam-Gia-Hao, Chiang Chih-Hao, Shirsat Sumedh M, Nguyen Thi-Quynh-Hoa, Singh Jitendra, Wu Han-Song, Liu Yu-Lun, Tsai Meng-Lin
Department of Materials Science and Engineering, National Taiwan University of Science and Technology, Taipei 106335, Taiwan.
Nanoscale. 2023 Apr 6;15(14):6581-6587. doi: 10.1039/d2nr07008a.
In this work, we aim to fabricate a highly stable and flexible perovskite paper photodetector based on a Zn-doped MAFAPbI perovskite and CNC. The paper photodetector has been successfully synthesized by the vacuum filtration method and deposited with interdigitated electrodes. The paper photodetector exhibits a significant photoresponse with a responsivity of 0.23 A W under 650 nm light irradiation when operated at 5 V. The stability of the paper photodetector has also been tested and it shows high photoresponse after 30 days under ambient conditions. Therefore, this paper photodetector holds promise for developing efficient, stable, and flexible optoelectronic devices in the future.
在这项工作中,我们旨在基于锌掺杂的MAFAPbI钙钛矿和纤维素纳米晶制备一种高度稳定且灵活的钙钛矿纸质光电探测器。该纸质光电探测器已通过真空过滤法成功合成,并沉积了叉指电极。当在5V电压下工作时,该纸质光电探测器在650nm光照下表现出显著的光响应,响应度为0.23 A/W。该纸质光电探测器的稳定性也经过了测试,在环境条件下放置30天后仍显示出高光响应。因此,这种纸质光电探测器有望在未来开发高效、稳定且灵活的光电器件。