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    • 6. 发明授权
    • Scintillator detector fabrication
    • 闪烁探测器制造
    • US07361901B1
    • 2008-04-22
    • US11445752
    • 2006-06-02
    • Valeriy Gaysinskiy
    • Valeriy Gaysinskiy
    • G01T1/20
    • G01T1/202
    • The present invention provides methods for selectively forming a scintillator layer on a substrate as well as related devices. The method includes positioning an electrostatic dissipative organic resin layer on a first portion of a substrate surface, and depositing scintillator material on both the resin layer and a second portion of the substrate surface. The method further includes removing the resin layer from the substrate as to remove from the substrate scintillator material deposited on the resin layer while leaving scintillator material on the second portion of the substrate.
    • 本发明提供了在衬底上选择性地形成闪烁体层以及相关器件的方法。 该方法包括将静电消散有机树脂层定位在基板表面的第一部分上,并将闪烁体材料沉积在树脂层和基板表面的第二部分上。 该方法还包括从衬底去除树脂层,以便从沉积在树脂层上的衬底闪烁体材料移除,同时将闪烁体材料留在衬底的第二部分上。
    • 10. 发明授权
    • ZnSe scintillators
    • ZnSe闪烁体
    • US07700920B2
    • 2010-04-20
    • US11894484
    • 2007-08-20
    • Vivek NagarkarValeriy Gaysinskiy
    • Vivek NagarkarValeriy Gaysinskiy
    • G01T1/20
    • G01T1/202
    • The present invention relates to a microcolumnar zinc selenide (ZnSe) scintillator and uses thereof, and methods of fabrication of microcolumnar scintillators using sublimation-based deposition techniques. In one embodiment, the present invention includes a scintillator including a microcolumnar scintillator material including zinc selenide (ZnSe) and a dopant. The microcolumnar scintillators of the present invention provide improved light channeling and resolution characteristics, thereby providing high spatial resolution, highly efficient scintillators.
    • 本发明涉及一种微柱状硒化锌(ZnSe)闪烁体及其用途,以及使用升华型沉积技术制造微柱闪烁体的方法。 在一个实施方案中,本发明包括闪烁体,其包括包含硒化锌(ZnSe)和掺杂剂的微柱闪烁体材料。 本发明的微柱闪烁体提供改进的光通道和分辨率特性,从而提供高空间分辨率,高效闪烁体。