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Magnetron Sputtered CsPbCl(3) Perovskite Detectors as Real-Time Dosimeters for Clinical Radiotherapy

The aim of this study is to investigate the feasibility of manufacturing thin real-time relative dosimeters for clinical radiotherapy (RT) with potential applications for transmission monitoring in vivo dosimetry and pre-treatment dose verifications. Thin (≈1 μm) layers of a high sensitivity, wide b...

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Autores principales: Bruzzi, Mara, Calisi, Nicola, Latino, Matteo, Falsini, Naomi, Vinattieri, Anna, Talamonti, Cinzia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9948841/
https://www.ncbi.nlm.nih.gov/pubmed/35370027
http://dx.doi.org/10.1016/j.zemedi.2022.02.003
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author Bruzzi, Mara
Calisi, Nicola
Latino, Matteo
Falsini, Naomi
Vinattieri, Anna
Talamonti, Cinzia
author_facet Bruzzi, Mara
Calisi, Nicola
Latino, Matteo
Falsini, Naomi
Vinattieri, Anna
Talamonti, Cinzia
author_sort Bruzzi, Mara
collection PubMed
description The aim of this study is to investigate the feasibility of manufacturing thin real-time relative dosimeters for clinical radiotherapy (RT) with potential applications for transmission monitoring in vivo dosimetry and pre-treatment dose verifications. Thin (≈1 μm) layers of a high sensitivity, wide bandgap semiconductor, the inorganic perovskite CsPbCl(3), have been grown for the first time by magnetron sputtering on plastic substrates equipped with electrode arrays. Prototype devices have been tested in real-time configuration to evaluate the dose delivered by a 6 MV photon beam from a linear accelerator. Linearity of the charge with the dose has been verified over three order of magnitudes, linearity of the current signal with the dose rate has been also successfully tested in the range 0.5-4.3 Gy/min. The combination of high sensitivity per unit volume and wide bandgap provides high signal-to-noise ratios, up to 70, even at moderate applied voltages. The Schottky diode configuration allows the detector to operate without bias voltage (null bias).The blocking-barrier structure allows to confine the active volume within sub-millimetric sizes, a quite attractive feature in view to increase granularity and achieve the high spatial resolutions required in modern RT techniques. All the above-mentioned features indeed pave the way to a novel generation of flexible, transmission, real time dosimeters for clinical radiotherapy.
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spelling pubmed-99488412023-02-23 Magnetron Sputtered CsPbCl(3) Perovskite Detectors as Real-Time Dosimeters for Clinical Radiotherapy Bruzzi, Mara Calisi, Nicola Latino, Matteo Falsini, Naomi Vinattieri, Anna Talamonti, Cinzia Z Med Phys Original Paper The aim of this study is to investigate the feasibility of manufacturing thin real-time relative dosimeters for clinical radiotherapy (RT) with potential applications for transmission monitoring in vivo dosimetry and pre-treatment dose verifications. Thin (≈1 μm) layers of a high sensitivity, wide bandgap semiconductor, the inorganic perovskite CsPbCl(3), have been grown for the first time by magnetron sputtering on plastic substrates equipped with electrode arrays. Prototype devices have been tested in real-time configuration to evaluate the dose delivered by a 6 MV photon beam from a linear accelerator. Linearity of the charge with the dose has been verified over three order of magnitudes, linearity of the current signal with the dose rate has been also successfully tested in the range 0.5-4.3 Gy/min. The combination of high sensitivity per unit volume and wide bandgap provides high signal-to-noise ratios, up to 70, even at moderate applied voltages. The Schottky diode configuration allows the detector to operate without bias voltage (null bias).The blocking-barrier structure allows to confine the active volume within sub-millimetric sizes, a quite attractive feature in view to increase granularity and achieve the high spatial resolutions required in modern RT techniques. All the above-mentioned features indeed pave the way to a novel generation of flexible, transmission, real time dosimeters for clinical radiotherapy. Elsevier 2022-03-31 /pmc/articles/PMC9948841/ /pubmed/35370027 http://dx.doi.org/10.1016/j.zemedi.2022.02.003 Text en © 2022 Published by Elsevier GmbH on behalf of DGMP, ÖGMP and SSRMP. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Paper
Bruzzi, Mara
Calisi, Nicola
Latino, Matteo
Falsini, Naomi
Vinattieri, Anna
Talamonti, Cinzia
Magnetron Sputtered CsPbCl(3) Perovskite Detectors as Real-Time Dosimeters for Clinical Radiotherapy
title Magnetron Sputtered CsPbCl(3) Perovskite Detectors as Real-Time Dosimeters for Clinical Radiotherapy
title_full Magnetron Sputtered CsPbCl(3) Perovskite Detectors as Real-Time Dosimeters for Clinical Radiotherapy
title_fullStr Magnetron Sputtered CsPbCl(3) Perovskite Detectors as Real-Time Dosimeters for Clinical Radiotherapy
title_full_unstemmed Magnetron Sputtered CsPbCl(3) Perovskite Detectors as Real-Time Dosimeters for Clinical Radiotherapy
title_short Magnetron Sputtered CsPbCl(3) Perovskite Detectors as Real-Time Dosimeters for Clinical Radiotherapy
title_sort magnetron sputtered cspbcl(3) perovskite detectors as real-time dosimeters for clinical radiotherapy
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9948841/
https://www.ncbi.nlm.nih.gov/pubmed/35370027
http://dx.doi.org/10.1016/j.zemedi.2022.02.003
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