Wafer-Scale Photolithography-Pixeled Pb-Free Perovskite X-ray Detectors

Guan Hua Dun, Hainan Zhang, Ken Qin, Xichao Tan, Rui Zhao, Min Chen, Yao Huang, Xiang Shun Geng, Yuan Yuan Li, Yuhua Li, Peng Wan, Guang Yang Gou, Qi Xin Feng, Xin Ran Zheng, Renrong Liang*, Dan Xie*, Yuanyuan Zhou, Xueyun Wang, He Tian*, Yi Yang*Tian Ling Ren*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

39 Citations (Scopus)

Abstract

Pb-free perovskite material is considered to be a promising material utilized in next-generation X-ray detectors due to its high X-ray absorption coefficient, decent carrier transport properties, and relatively low toxicity. However, the pixelation of the perovskite material with an industry-level photolithography processing method remains challenging due to its poor structural stability. Herein, we use Cs2AgBiBr6perovskite material as the prototype and investigate its interaction with photolithographic polar solvents. Inspired by that, we propose a wafer-scale photolithography patterning method, where the pixeled perovskite array devices for X-ray detection are successfully prepared. The devices based on pixeled Pb-free perovskite material show a high detection sensitivity up to 19118 ± 763 μC Gyair-1cm-2, which is comparable to devices with Pb-based perovskite materials and superior to the detection sensitivity (∼20 μC Gyair-1cm-2) of the commercial a-Se detector. After pixelation, the devices achieve an improved spatial resolution capacity with the spatial frequency from 2.7 to 7.8 lp mm-1at modulation-transfer-function (MTF) = 0.2. Thus, this work may contribute to the development of high-performance array X-ray detectors based on Cs2AgBiBr6perovskite material.

Original languageEnglish
Pages (from-to)10199-10208
Number of pages10
JournalACS Nano
Volume16
Issue number7
DOIs
Publication statusPublished - 26 Jul 2022

Keywords

  • Pb-free CsAgBiBrperovskite
  • array X-ray detectors
  • perovskite patterning
  • perovskite photolithography
  • perovskite pixeled devices

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