Detecting hard X-rays and γ-rays with high energy resolution is critical for medical and industrial applications, high-energy fundamental physics, and homeland security. Two types of radiation detectors, indirect-conversion (scintillators) and direct-conversion (solid-state) detectors, are the most widely used technologies. Semiconductor-based detectors that can directly convert γ-rays into an electrical signal and operate at room temperature are especially important as portable and cost-efficient detectors with high sensitivity and energy resolution. Recently, lead halide perovskites have attracted enormous interest for γ-ray detection, and significant progress has been made toward practical detectors using perovskites as active materials. In this Review, we start with the fundamentals of γ-ray detection and review the recent developments in halide perovskite γ-ray detectors. The key factors affecting the detector performance are summarized. We also give an outlook on the field, with emphasis on the challenges to be overcome.

Liu, F., Wu, R., Wei, J., Nie, W., Mohite, A., Brovelli, S., et al. (2022). Recent Progress in Halide Perovskite Radiation Detectors for Gamma-Ray Spectroscopy. ACS ENERGY LETTERS, 7(3), 1066-1085 [10.1021/acsenergylett.2c00031].

Recent Progress in Halide Perovskite Radiation Detectors for Gamma-Ray Spectroscopy

Brovelli S.;
2022

Abstract

Detecting hard X-rays and γ-rays with high energy resolution is critical for medical and industrial applications, high-energy fundamental physics, and homeland security. Two types of radiation detectors, indirect-conversion (scintillators) and direct-conversion (solid-state) detectors, are the most widely used technologies. Semiconductor-based detectors that can directly convert γ-rays into an electrical signal and operate at room temperature are especially important as portable and cost-efficient detectors with high sensitivity and energy resolution. Recently, lead halide perovskites have attracted enormous interest for γ-ray detection, and significant progress has been made toward practical detectors using perovskites as active materials. In this Review, we start with the fundamentals of γ-ray detection and review the recent developments in halide perovskite γ-ray detectors. The key factors affecting the detector performance are summarized. We also give an outlook on the field, with emphasis on the challenges to be overcome.
Articolo in rivista - Review Essay
perovskites, radiation detectors
English
21-feb-2022
2022
7
3
1066
1085
none
Liu, F., Wu, R., Wei, J., Nie, W., Mohite, A., Brovelli, S., et al. (2022). Recent Progress in Halide Perovskite Radiation Detectors for Gamma-Ray Spectroscopy. ACS ENERGY LETTERS, 7(3), 1066-1085 [10.1021/acsenergylett.2c00031].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/560625
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