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"A review of printable, flexible and tissue equivalent materials for io" by Jessie A. Posar, Marco Petasecca et al. - Vimarsana News

"A review of printable, flexible and tissue equivalent materials for io" by Jessie A. Posar, Marco Petasecca et al.

Advances in flexible and printable electronics have paved the way for large-area, and low-cost wearable electronics that will revolutionize the way we detect and monitor ionizing radiation. The improvements to early detection and widespread use of treatment procedures of tumors and other illnesses using ionizing radiation have led to the rapid increase in the yearly dose exposure to the public. Therefore, safety organizations must introduce stricter quality assurance measures to ensure the safe delivery of the total dose to the patient - only achievable using live monitoring systems, named in-...

Source: uow.edu.au
"Flexible Polymer X-ray Detectors with Non-fullerene Acceptors for Enha" by Matthew J. Large, Jessie A. Posar et al. - Vimarsana News

"Flexible Polymer X-ray Detectors with Non-fullerene Acceptors for Enha" by Matthew J. Large, Jessie A. Posar et al.

There is growing interest in the development of novel materials and devices capable of ionizing radiation detection for medical applications. Organic semiconductors are promising candidates to meet the demands of modern detectors, such as low manufacturing costs, mechanical flexibility, and a response to radiation equivalent to human tissue. However, organic semiconductors have typically been employed in applications that convert low energy photons into high current densities, for example, solar cells and LEDs, and thus existing design rules must be re-explored for ionizing radiation detection...

Source: uow.edu.au