Evaluating the Resistance of Bifacial Perovskite Photodetectors to Xenon Ion Irradiation
Yerassyl Yerlanuly, Hryhorii P. Parkhomenko, Almaz R. Beisenbayev, Maxim V. Zdorovets, Annie Ng, Askhat N. Jumabekov

TL;DR
Bifacial perovskite photodetectors show strong resistance to high-energy xenon ion radiation, making them suitable for use in extreme radiation environments.
Contribution
Demonstrates the radiation tolerance of bifacial perovskite photodetectors under high fluence xenon ion irradiation.
Findings
At low fluence, photodetector performance slightly decreased but detectivity increased due to higher shunt resistance.
At high fluence, devices retained over 60% of their initial performance and maintained low spectral noise density.
Bifacial perovskite photodetectors show potential for reliable operation in harsh radiation environments.
Abstract
In this work, high‐performance bifacial perovskite photodetectors (BPPDs) are systematically investigated before and after xenon ion irradiation with energy 1.75 MeV nucleon−1 (231 MeV) and fluences up to 1011 nucleons cm−2, simulating extreme radiation environments. A comprehensive characterization of the materials used in the device's functional layers is conducted, accompanied by an in‐depth analysis of device performance before and after irradiation. Before irradiation, the devices exhibited good performance, with responsivity (R) of 0.39 A W−1 (front side) and 0.33 A W−1 (back side), detectivity (D*) of 2.4 × 1011 and 2.0 × 1011 Jones. At low fluence (1010 nucleons cm−2): R slightly decreased to 0.37/0.31 A W−1, while D* increased to 4.4 × 1011/3.7 × 1011 Jones due to an increase in shunt resistance. At higher fluence (1011 nucleons cm−2), irradiation induced high defect formation…
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Taxonomy
TopicsPerovskite Materials and Applications · Luminescence Properties of Advanced Materials · solar cell performance optimization
