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Fabrication of bifacial sandwiched heterojunction photoconductor a?? Type and MAI passivated photodiode a?? Type perovskite photodetectors

DOI:10.1016/j.orgel.2020.105730 期刊:Organic Electronics 出版年份:2020 更新时间:2025-09-23 15:21:01
摘要: In this work, we report novel heterojunctions perovskite photodetector architecture utilizing metal-free contact electrodes. The metal-free contact electrodes were exploited to fabricate photoconductor – type perovskite photodetector. The attempt to investigate the effect of passivating the active layers of the as – proposed architecture with electrolytic MAI gave rise to a photodiode – type perovskite photodetector. These two photodetector types are sensitive and responsive to light sources through their dual transparent electrodes faces (N-face and T-face). We also showed that passivating the surfaces of the sandwiched perovskite layers with MAI solution improves the performance of the fabricated photodetectors, where the detectivity is enhanced by a factor of hundred compared to non-passivated devices. The proposed photodetectors architectures demonstrate champion dual-detectivity (1.77×1014 Jones for N-face and 4.64 × 1014 Jones for T-face), dual-responsivity (1.94 × 103 A/W for N-face and 1.61 × 103 A/W for T-face) and high dual – sensitivity (3.3 × 102 for N-face and 1.1 × 102 for T-face). All these properties were obtained from the two faces of the MAI passivated photodetectors under 0.02 mW/cm2 red LED illumination and at -2.0 bias voltage. This novel architecture may scale up towards building energy and cost efficient classes of optoelectronic and photovoltaic devices which are responsive to light in two directions.
作者: AbdulJelili Popoola,Mohammed A. Gondal,Idris K. Popoola,Luqman E. Oloore,Osman M. Bakr
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Investigating the fabrication and performance of bifacial sandwiched heterojunction photoconductor-type and MAI passivated photodiode-type perovskite photodetectors.

The study successfully fabricated bifacial perovskite photodetectors with high performance metrics, including detectivity, responsivity, and sensitivity. MAI passivation significantly improved the photodetectors' performance, suggesting potential for energy-efficient and cost-effective optoelectronic devices responsive to light in two directions.

The study does not discuss the long-term stability and environmental impact of the fabricated photodetectors. Additionally, the scalability of the fabrication process for industrial applications is not addressed.

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