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6篇 您的检索式:作者名="Chewpraditkul"
    题名 作者 年代 出处 被引量
1Spectroscopic properties and energy transfer of Eu 2+ /Tb 3+ co-doped high silica glass显示文摘Yinglong Shen Qiang Zhang Jimeng Cheng Qiuchun Sheng Shuang Liu Wentao Li W. Chewpraditkul Danping Chen 2013Materials Letters2013,,:1
2Scintillation response of Lu3 Al5 O12 : Pr3+ single crystal scintillators 显示文摘Sreebunpeng K Chewpraditkul W Nikl M 2012Nuel Instrum Methods Phys Res B2012,286,:1
3Scintillation properties of Gd 3 Al 2 Ga 3 O 12 :Ce 3+ single crystal scintillators显示文摘Ongsa Sakthong Weerapong Chewpraditkul Chalerm Wanarak Kei Kamada Akira Yoshikawa Petr Prusa Martin Nikl 2014Nuclear Inst. and Methods in Physics Research, A2014,,:1
4Compositional regulation of multi-component GYGAG:Ce scintillation ceramics:Self-sintering-aid effect and afterglow suppression显示文摘(Gd,Y,Ce)_(3)(Y_(x)Ga_(1−x))_(2)GaAl_(2)O_(12)(GYGAG:Ce)scintillation ceramics with different Y excess,where x=0.005−0.08,were fabricated by the solid-state reaction method.The effects of stoichiometry on the phase composition,optical quality,and microstructure of GYGAG:Ce ceramics were analyzed.GYGAG:Ce ceramics have a pure garnet phase and obtain good in-line transmittance when x<0.04,while more Y excess leads to the creation of the secondary phase.The change of x value influences the sintering behavior of the GYGAG:Ce ceramics:The excess of Y works as the self-sintering aid and significantly reduces the sintering temperature of ceramics.When x=0.01–0.04,the X-ray excited luminescence(XEL)spectra and light yields of GYGAG:Ce ceramics are similar.The fast scintillation decay time and afterglow intensity of GYGAG:Ce ceramics show a slight decrease with increasing x value.Finally,additional 50–500 ppm MgO and 100–500 ppm CaO were introduced to the GYGAG:Ce ceramic with x=0.04,and both were found to significantly increase the fast scintillation component and reduce the afterglow intensity by two orders of magnitude to 0.01%after X-ray cut-off.Danyang Zhu Lexiang Wu Alena Beitlerova Romana Kucerkova Weerapong Chewpraditkul Martin Nikl Jiang Li 2023Journal of Advanced Ceramics2023,12,10:0
5Ce掺杂浓度对Ce,Ca:Lu_(3)Al_(5)O_(12)陶瓷闪烁性能的影响显示文摘以共沉淀纳米粉体为原料,制备不同Ce掺杂浓度的x%(摩尔分数)Ce,0.15%Ca:Lu_(3)Al_(5)O_(12)(Ce,Ca:LuAG,x=0.1~0.5)闪烁陶瓷。在分析了Ce,Ca:Lu AG陶瓷的相组成和微观结构的基础上,研究了其闪烁特性与Ce浓度的关系,包括X射线激发发射光谱、光致发光衰减、闪烁衰减、光产额及快分量、余辉。当Ce浓度超过0.3%时,光致发光衰减的加速证实了浓度猝灭的发生。Ce,Ca:LuAG陶瓷的X射线激发发射强度和光产额在Ce浓度为0.3%时达到最大值。随着Ce浓度的增加,陶瓷的余辉水平逐渐降低。最后讨论了Ce,Ca:LuAG闪烁陶瓷的制备和性能优化的策略。朱丹阳 蔡金伶 BEITLEROVA Alena KUCERKOVA Romana CHEWPRADITKUL Weerapong NIKL Martin 李江 2024硅酸盐学报2024,52,3:0
6Development and prospects of garnet ceramic scintillators:A review显示文摘Garnet ceramic scintillators are a class of inorganic scintillation materials with excellent overall performance.The flexibility of cation substitution in different lattice positions leads to tunable and versatile properties and a wide range of applications.This paper starts with an overview of the development history of the inorganic scintillation materials,followed by a description of major preparation methods and characterization of garnet scintillation ceramics.Great progress obtained in recent years consisting in applying the band-gap and defect engineering strategies to the garnet scintillation ceramics is reviewed.Finally,the respective problems in the preparation and performance of multicomponent garnet single crystals and ceramics and the effective solutions are discussed.The garnet scintillation ceramics with the highest application potential are summarized,and the future development directions are proposed.Danyang ZHU Martin NIKL Weerapong CHEWPRADITKUL Jiang LI 2022Journal of Advanced Ceramics2022,11,12:0
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