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Real-Time Radiation Beam Monitoring by Flexible Perovskite Thin Film Arrays. | LitMetric

Real-Time Radiation Beam Monitoring by Flexible Perovskite Thin Film Arrays.

Adv Sci (Weinh)

Department of Physics and Astronomy, University of Bologna, viale Berti Pichat 6/2, Bologna (BO), 40127, Italy.

Published: October 2024

AI Article Synopsis

  • - The text discusses a new flexible device made from 2D hybrid perovskite thin films that can monitor ionizing radiation beams in real-time, which is important for fields like medicine and high-energy physics.
  • - This device has been tested for mapping high-energy radiation beams, including a 5 MeV proton beam, and shows excellent performance compared to traditional methods, like radiochromic sheets, without saturation issues.
  • - The research highlights the versatility of perovskite detectors, demonstrating their ability to create multipixel arrays for real-time monitoring of various radiation sources, making them cost-effective and practical for many applications.

Article Abstract

Real-time and in-line transversal monitoring of ionizing radiation beams is a crucial task for several applications which span from medical treatments to particle accelerators in high energy physics. Here a flexible and large area device based on 2D hybrid perovskite thin films (phenylethylammonium lead bromide), fabricated onto a thin flexible polyimide substrate, able to map the transversal beam profile of high energy radiation beams is reported. The performance of this novel tool is here compared with the one offered by standard commercial large-area technology, namely radiochromic sheets. The great potential of this class of devices is demonstrated by successfully mapping in real-time a 5 MeV proton beam at fluxes between 10 and 10 H s cm, confirming the capability to operate in a radiation-harsh environment without output signal saturation issues. The versatility and scalability of here proposed detecting system are demonstrated by the development of a multipixel array able to map in real-time a 40 kVp X-ray beam spot (dose rate 8 mGy s). Perovskite thin film-based detectors are thus assessed as a very promising class of thin, flexible devices for real-time, in-line, large-area, conformable, reusable, transparent, and low-cost transversal beam monitoring of different ionizing radiation.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11516118PMC
http://dx.doi.org/10.1002/advs.202401124DOI Listing

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