AI Article Synopsis

  • Perovskite semiconductors like methylammonium and cesium lead halides have gained popularity for radiation detection due to their outstanding electronic and optical properties.
  • The combination of perovskites with materials like metal oxide semiconductors allows for the development of effective diodes that can detect various types of radiation with low power requirements.
  • This study presents a novel neutron detector using a heterojunction diode made from single-crystal MAPbBr and gallium oxide, achieving impressive performance metrics such as a low leakage current and high detection efficiency for neutrons while enhancing gamma discrimination by optimizing crystal thickness.

Article Abstract

Perovskite-based semiconductors, such as methylammonium and cesium lead halides (MPbX: M = CHNH or Cs; X = I, Br, or Cl), have attracted immense attention for several applications, including radiation detection, due to their excellent electronic and optical properties. In addition, the combination of perovskites with other materials enables unique device structures. For example, robust and reliable diodes result when combined with metal oxide semiconductors. This device can be used for detection of nonionizing and ionizing radiation. In this paper, we report a unique perovskite single-crystal-based neutron detector using a heterojunction diode based on single-crystal MAPbBr and gallium oxide (GaO) thin film. The MAPbBr/GaO diodes demonstrate a leakage current of ∼7 × 10 A/mm, an on/off ratio of ∼10, an ideality factor of 1.41, and minimal hysteresis that enables alpha particle, gamma-ray, and neutron detection at a bias as low as (-5 V). Gamma discrimination is further improved by 85% by optimizing the thickness of the perovskite single crystal. The MAPbBr/GaO diodes also demonstrate a neutron detection efficiency of ∼3.92% when combined with a B neutron conversion layer.

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Source
http://dx.doi.org/10.1021/acsami.1c03580DOI Listing

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