TY - JOUR
T1 - Perovskite Capped ZnO Nanorods Ultraviolet/Visible Broadband Photodetectors
AU - Li, Ming Hsien
AU - Jhang, Jia Jie
AU - Chen, Shih Ming
AU - Chen, Jun Ru
AU - Lu, Lin Sin
AU - Chen, Hong Hsueh
AU - Chen, Peter
AU - Chen, Hsiang
AU - Lin, Chia Feng
AU - Han, Jung
N1 - Funding Information:
This work was supported by the Ministry of Science and Technology, Taiwan, under Grants MOST 110-2221-E-260-006-and MOST 109-2222-E-260-001-MY3.
Publisher Copyright:
© 2002-2012 IEEE.
PY - 2022
Y1 - 2022
N2 - A high-performance broadband photodetector (PD) based on triple-cation perovskite (PVSK)/ZnO nanorods (ZnO NRs) is fabricated. Multiple material analysis, including scanning electron microscope (SEM), absorption spectrum, X-ray diffractometer (XRD), and high-resolution transmission electron microscopy (HR-TEM) are conducted. The analyses indicate that a dense perovskite film is closely capped on the ZnO NRs. A light source with different wavelength is applied to evaluate the photosensitive behaviors along with impulse responses of the PVSK/ZnO NRs PDs and pure ZnO NRs PDs. Results show that the PVSK/ZnO NRs PDs are sensitive to the ultraviolet (UV) and visible light, while the pure ZnO NRs PDs are only sensitive to the UV light. Moreover, owing to the superior photoelectric properties of triple-cation perovskite than the mono-cation perovskite, the triple-cation PVSK/ZnO NRs PDs deliver a high declivity of 7.69 × 1012, 1.49, ×, 1013 and 3.61, ×, 1013 Jones under the light illumination with a wavelength of 350, 450 and 600 nm, respectively. Triple-cation PVSK/ZnO NRs composites are promising materials for broadband wavelength detection from UV to visible light with high detectivity.
AB - A high-performance broadband photodetector (PD) based on triple-cation perovskite (PVSK)/ZnO nanorods (ZnO NRs) is fabricated. Multiple material analysis, including scanning electron microscope (SEM), absorption spectrum, X-ray diffractometer (XRD), and high-resolution transmission electron microscopy (HR-TEM) are conducted. The analyses indicate that a dense perovskite film is closely capped on the ZnO NRs. A light source with different wavelength is applied to evaluate the photosensitive behaviors along with impulse responses of the PVSK/ZnO NRs PDs and pure ZnO NRs PDs. Results show that the PVSK/ZnO NRs PDs are sensitive to the ultraviolet (UV) and visible light, while the pure ZnO NRs PDs are only sensitive to the UV light. Moreover, owing to the superior photoelectric properties of triple-cation perovskite than the mono-cation perovskite, the triple-cation PVSK/ZnO NRs PDs deliver a high declivity of 7.69 × 1012, 1.49, ×, 1013 and 3.61, ×, 1013 Jones under the light illumination with a wavelength of 350, 450 and 600 nm, respectively. Triple-cation PVSK/ZnO NRs composites are promising materials for broadband wavelength detection from UV to visible light with high detectivity.
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U2 - 10.1109/TNANO.2022.3200677
DO - 10.1109/TNANO.2022.3200677
M3 - Article
AN - SCOPUS:85137545005
SN - 1536-125X
VL - 21
SP - 499
EP - 504
JO - IEEE Transactions on Nanotechnology
JF - IEEE Transactions on Nanotechnology
ER -