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Fast Response, High Spectral Rejection Ratio, Self-Filtered Ultranarrowband Photodetectors Based on Perovskite Single-Crystal Heterojunctions

Lu Xue, Xin Wang,Yu-Zhu Pan,Manman Luo, Yubing Xu, Yu-Wei Li, Jing-Da Zhao, Zhiwei Zhao, Qing Li,Byung-Seong Bae, Omolola Esther Fayemi, Jianming Zhou, Ying Zhu, Wei Lei, Xiaobing Zhang

ACS APPLIED MATERIALS & INTERFACES(2023)

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Abstract
Narrowband photodetectors have wide application potential in high-resolution imaging and encrypted communication, due to their high-precision spectral resolution capability. In this work, we report a fast response, high spectral rejection ratio, and self-filtered ultranarrowband photodetector with a new mechanism, which introduces bulk recombination by doping Bi3+ and cooperates with surface recombination for further quenching photogenerated charges generated by short-wavelength-light excitation in perovskite single-crystal. A perovskite film focused on collecting charges is fabricated on the single crystal by a lattice-matched solution-processed epitaxial growth method. Due to the formation of PN heterojunctions, a narrowband photodetector in this mechanism has remarkable spectral selectivity and detection performance with an ultranarrow full width at half-maximum (FWHM) of 7.7 nm and a high spectral rejection ratio of 790, as well as a high specific detectivity up to 1.5 x 10(10) Jones, a fast response speed with a rise time and fall time of similar to 8 and 137 mu s. The ultrafast and ultranarrow spectra response of self-filtered narrowband photodetector provides a new strategy in high-precision and high-resolution photoelectric detection.
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Key words
narrowband photodetectors,self-filtered photodetectors,perovskite single-crystal,PN heterojunctions,solution-processed epitaxial growth
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