A Transparent Nano-Polycrystalline ZnWO4 Thin-Film Scintillator for High-Resolution X-ray Imaging

被引:9
|
作者
Jeong, Heon Yong [1 ]
Lee, Ju Hyuk [1 ]
Lee, Sang Yoon [1 ]
Lee, Jaewoo [1 ]
Cho, Sung Oh [1 ]
机构
[1] Korea Adv Inst Sci & Technol, Dept Nucl & Quantum Engn, Daejeon 34141, South Korea
来源
ACS OMEGA | 2021年 / 6卷 / 48期
基金
新加坡国家研究基金会;
关键词
OPTICAL-PROPERTIES; FABRICATION; GROWTH; MICROSTRUCTURE; NANOPARTICLES; PERFORMANCE; CERAMICS; DETECTOR; OXIDE;
D O I
10.1021/acsomega.1c05962
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Facile approaches for creating thin-film scintillators with high spatial resolutions and variable shapes are required to broaden the applicability of high-resolution X-ray imaging. In this study, a transparent nano-polycrystalline ZnWO4 thin-film scintillator was fabricated by thermal evaporation for high-resolution X-ray imaging. The scintillator is composed of nanosized grains smaller than the optical wavelength range to minimize optical scattering. The high transparency of the scintillators affords a sufficiently high spatial resolution to resolve the 2 mu m line and space patterns when used in a high-resolution X-ray imaging system with an effective pixel size of 650 nm. The thermal evaporation method is a convenient approach for depositing thin and uniform films on complex substrates. ZnWO4 thin-film scintillators with various shapes, such as pixelated and curved, were fabricated via thermal evaporation. The results show that the transparent nano-polycrystalline ZnWO4 thin-film scintillator deposited through thermal evaporation has a potential for use in various high-resolution X-ray imaging applications.
引用
收藏
页码:33224 / 33230
页数:7
相关论文
共 50 条
  • [31] High-resolution X-ray luminescence extension imaging
    Xiangyu Ou
    Xian Qin
    Bolong Huang
    Jie Zan
    Qinxia Wu
    Zhongzhu Hong
    Lili Xie
    Hongyu Bian
    Zhigao Yi
    Xiaofeng Chen
    Yiming Wu
    Xiaorong Song
    Juan Li
    Qiushui Chen
    Huanghao Yang
    Xiaogang Liu
    Nature, 2021, 590 : 410 - 415
  • [32] X-RAY OPTICS - A TECHNIQUE FOR HIGH-RESOLUTION IMAGING
    CASH, W
    APPLIED OPTICS, 1987, 26 (14): : 2915 - 2920
  • [33] High-resolution imaging silicon X-ray spectrometers
    Strüder, L
    NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2004, 522 (1-2): : 146 - 146
  • [34] X-ray high-resolution vascular network imaging
    Plouraboué, F
    Cloetens, P
    Fonta, C
    Steyer, A
    Lauwers, F
    Marc-Vergnes, JP
    JOURNAL OF MICROSCOPY-OXFORD, 2004, 215 : 139 - 148
  • [35] THE PREPARATION OF THIN-FILM TRANSPARENT BAFCL-EU X-RAY PHOSPHOR
    CARCIA, PF
    BRIXNER, LH
    THIN SOLID FILMS, 1984, 115 (02) : 89 - 95
  • [36] A high-resolution X-ray microscope system for performance evaluation of scintillator plates
    Yamamoto, Seiichi
    Yoshino, Masao
    Kamada, Kei
    Yajima, Ryuga
    Yoshikawa, Akira
    Sagisaka, Mayu
    Kataoka, Jun
    JOURNAL OF INSTRUMENTATION, 2022, 17 (09):
  • [37] High-spatial-resolution X-ray Imaging by Scintillator in Silicon Collimator
    Tabata, Kento
    Ohtake, Ryota
    Aoki, Toru
    SENSORS AND MATERIALS, 2020, 32 (12) : 4037 - 4045
  • [38] Highly Efficient Flexible Antimony Halide Scintillator Films with In Situ Preparation for High-Resolution X-Ray Imaging
    Meng, Haixing
    Li, Ying
    Wang, Ying
    Zhu, Minqi
    Xiao, Jiawen
    Shen, Guozhen
    LASER & PHOTONICS REVIEWS, 2025, 19 (04)
  • [39] Terbium doped LiLuF4 nanocrystal scintillator-based flexible composite film for high resolution X-ray imaging
    Lu, Hao
    Xu, Xieming
    Feng, Guiqing
    Sun, Baoping
    Wang, Shuaihua
    Wu, Shaofan
    RSC ADVANCES, 2022, 12 (08) : 4615 - 4623
  • [40] High-Resolution Neutron and X-Ray Imaging of Granular Materials
    Kim, Felix H.
    Penumadu, Dayakar
    Gregor, Jens
    Kardjilov, Nikolay
    Manke, Ingo
    JOURNAL OF GEOTECHNICAL AND GEOENVIRONMENTAL ENGINEERING, 2013, 139 (05) : 715 - 723