光电探测器
光电子学
光电流
钙钛矿(结构)
材料科学
光电二极管
带隙
量子效率
探测器
发光二极管
光刻胶
宽带
放大器
量子点
光电导性
光学
雷
二极管
异质结
作者
Ko Ko,Shin Thant,Pimsuda Pangsa-Ngat,Patawee Sakata,Ladda Srathongsian,Chaowaphat Seriwattanachai,Myo Zin Tun,Phyo Thuta Tun,Thanawat Kanlayapattamapong,Worawut Rueangsawang,K. Choodam,Pipat Ruankham,Nattaporn Chattham,Ratchadaporn Supruangnet,Hideki Nakajima
出处
期刊:Light: advanced manufacturing
[Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences]
日期:2026-01-01
卷期号:7: 1-1
标识
DOI:10.37188/lam.2026.073
摘要
Photodetectors (PDs) are optoelectronic components that transform incident light into electrical output and are broadly applied in areas such as biomedical imaging, chemical sensing, light detection, and environmental monitoring.Although traditional PDs that use materials including Si, InGaAs, MoS, and ZnO exhibit outstanding sensing performance, their production is expensive and complex.In contrast, perovskite-based PDs offer low-cost processability, bandgap tunability for light selectivity from the UV to IR wavelengths, and comparable detector performance.In addition, they can operate under zero-bias conditions (self-powered mode) via a photodiode configuration.In this study, we report a new hybrid perovskite-based self-powered (zero-bias) light sensor using a mixture of two perovskite materials with different band energies, exhibiting a "chocolate-chip-cookie" structure to achieve energy funnelling from one perovskite (chocolate chip) to another perovskite (cookie).By selecting CsPbBr3 as the chip and Cs0.05FA0.81MA0.14Pb(I0.85Br0.15)3as the cookie, our device behaves like an energy-selective broadband photocurrent amplifier in self-powered mode by enhancing light detection in both the green and UV regimes (532 and 365 nm, respectively) through electric-field redistribution and energy-funnelling mechanisms.For these two wavelengths, the device achieves external quantum efficiencies of 69.39% and 47.38%, spectral responsivities of 0.30 and 0.14 A W -1 , specific detectivities of 5.67 10 12 and 2.65 10 12 cm Hz 1/2 W -1 , and on/off ratios of 34 and 12, respectively.Furthermore, the charge-transfer mechanism is revealed by relevant characterisations.
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