Vuong Van-Hoang, Ippili Swathi, Pammi S V N, Bae JeongJu, Yang Tae-Youl, Jeong Min Ji, Chang Hyo Sik, Jeon Min-Gi, Choi Jihoon, Tran Manh Trung, Tran Van-Dang, Jella Venkatraju, Yoon Soon-Gil
Department of Materials Science and Engineering, Chungnam National University, Daejeon, 34134, South Korea.
Department of Physics, School of Sciences & Humanities, SR University, Warangal, Telangana, 506371, India.
Small Methods. 2024 Dec;8(12):e2400310. doi: 10.1002/smtd.202400310. Epub 2024 Sep 3.
Lead-based halide perovskites have gained significant prominence in recent years in optoelectronics and photovoltaics, owing to their exceptional optoelectronic properties. Nonetheless, the toxicity of lead (Pb) and the stability concern pose obstacles to their potential for future large-scale market development. Herein, stable lead-free CsBiI (CBI) films are presented with smooth and compact morphologies synthesized via chemical vapor deposition (CVD), demonstrating their application as an UV photodetector in a self-powered way. The self-powered photodetectors (SPDs) exhibit remarkable characteristics, including a responsivity of 1.57 A W and an impressive specific detectivity of 3.38 × 10 Jones under the illumination of 365 nm at zero bias. Furthermore, the SPDs exhibit a nominal decline (≈2.2%) in the photocurrent under constant illumination over 500 h, highlighting its impressive long-term operational stability. Finally, the real-time UV-detection capability of the device is demonstrated by measuring the photocurrent under various conditions, including room light and sunlight at different times. These findings offer a new platform for synthesizing stable and high-quality perovskite films, and SPDs for advancing the development of wearable and portable electronics.
近年来,基于铅的卤化物钙钛矿因其优异的光电性能在光电子学和光伏领域备受瞩目。然而,铅(Pb)的毒性和稳定性问题阻碍了其未来大规模市场发展的潜力。在此,通过化学气相沉积(CVD)合成了具有光滑致密形貌的稳定无铅CsBiI(CBI)薄膜,展示了其作为自供电紫外光探测器的应用。自供电光探测器(SPD)表现出显著的特性,包括在零偏压下365 nm光照下1.57 A W的响应度和3.38×10琼斯的令人印象深刻的比探测率。此外,在500多小时的持续光照下,SPD的光电流名义下降约2.2%,突出了其令人印象深刻的长期运行稳定性。最后,通过在包括不同时间的室内光和阳光等各种条件下测量光电流,展示了该器件的实时紫外探测能力。这些发现为合成稳定、高质量的钙钛矿薄膜以及推进可穿戴和便携式电子产品发展的SPD提供了一个新平台。