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Journal of Synthetic Crystals ›› 2026, Vol. 55 ›› Issue (2): 211-216.DOI: 10.16553/j.cnki.issn1000-985x.2025.0196

• Research Articles • Previous Articles     Next Articles

Preparation and Performance of Gadolinium Sulfoxide X-Ray Scintillation Screens Based on Silicon Microchannels

GUO Dingyi1(), WANG Guozheng1(), CHAI Yujia1, ZHANG Guangyin1, WANG Ji1, YANG Jikai1, HAO Ziheng2, LUO Yang2   

  1. 1.College of Physics,Changchun University of Science and Technology,Changchun 130022,China
    2.Science and Technology on Low-Light-Level Night Vision Laboratory,Xi’an 710065,China
  • Received:2025-09-09 Online:2026-02-20 Published:2026-03-06

Abstract: Gadolinium oxysulfide (GOS) scintillation crystals occupy an irreplaceable position in fields such as non-destructive testing and industrial flaw detection,primarily due to their high responsiveness to high-energy X-rays. Commercially available GOS X-ray scintillation screens typically feature a bulk ceramic structure. However,their resolution is generally low (less than 5 lp/mm) due to the issue of lateral optical crosstalk. In this study,silicon microchannel arrays with periods of 6,10 and 25 μm were fabricated using processes including photolithography,inductively coupled plasma (ICP) etching,and photo-assisted electrochemical etching. Subsequently,GOS X-ray scintillation screens based on these silicon microchannels were successfully prepared via a filling method that combines ultraviolet adhesive and GOS powder. An X-ray testing system was constructed to measure the effect of tube voltage on the brightness of the scintillation screens. The edge spread function (ESF) of the edge images was fitted using MATLAB software to derive the modulation transfer function (MTF),and the spatial resolution of the scintillation screens was further calculated from the MTF. Experimental results indicate that the brightness of the scintillation screens increases with the increase in tube voltage. Specifically,scintillation screens with larger periods exhibit higher brightness,while those with smaller periods demonstrate higher resolution. The resolution values are 18.1,16.8,and 12.0 lp/mm for the screens with periods of 6,10,and 25 μm,respectively.

Key words: X-ray scintillation screen; gadolinium sulfoxide; silicon microchannel; period; brightness; resolution

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