4.8 Article

An aerosol-liquid-solid process for the general synthesis of halide perovskite thick films for direct-conversion X-ray detectors

Journal

MATTER
Volume 4, Issue 3, Pages 942-954

Publisher

CELL PRESS
DOI: 10.1016/j.matt.2021.01.020

Keywords

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Funding

  1. NSFC [21905006, 21972006, 91833303]
  2. Shenzhen Peacock Plan [KQTD2016053015544057]
  3. Shenzhen & Hong Kong Joint Research Program [SGLH20180622092406130]
  4. Shenzhen Natural Science Foundation [JCYJ20190808163201831]
  5. Shenzhen Technical Research Foundation [JSGG20191129110210335]
  6. Nanshan Pilot Plan [LHTD20170001]

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This study demonstrates a low-cost method for large-scale fabrication of high-quality halide perovskite films and the construction of X-ray detectors with unprecedented sensitivity and low detection limit based on these films. The results show great potential for high-resolution radiographic imaging.
Medical X-ray computed tomography requires imaging at a low dose rate and in a large area. Halide perovskites have shown high potential for X-ray detection, but a pressing challenge is the current lack of low-cost methods for large-scale fabrication of high-quality thick perovskite films. Here we demonstrate and elucidate an aerosol-liquid-solid process to enable continuous growth of uniform halide perovskite films at low temperature over a large area of 100 cm(2), which are vertically monolithic, and thus beneficial to carrier transport. Direct-conversion X-ray detectors based on the representative CsPbI2Br films in conjunction with a deliberated, interface-engineered C-electrode have realized an unprecedented sensitivity (>= 1.48 3 10(5) mu C Gy(air)(-1) cm(-2)) and a low limit of detection (280 nGy(air) s(-1)). We have further demonstrated the high-resolution radiographic imaging capability of these films. These results lay the groundwork for large-scale application of halide perovskites in radiation detectors.

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