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Czochralski法生长Lu_2SiO_5:Ce晶体的发光特性(英文) 被引量:1
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作者 任国浩 秦来顺 +1 位作者 陆晟 李焕英 《人工晶体学报》 EI CAS CSCD 北大核心 2004年第4期520-523,共4页
本文使用铱坩埚感应加热Czochralski法成功地生长出了无色透明且尺寸达5 0mm× 6 0mm的Lu2 SiO5:Ce晶体。XRD结构分析表明 ,该晶体为单斜结构。在室温下分别以X射线和紫外光为激发源测量了该晶体的发射光谱 ,获得的发射波长分别为... 本文使用铱坩埚感应加热Czochralski法成功地生长出了无色透明且尺寸达5 0mm× 6 0mm的Lu2 SiO5:Ce晶体。XRD结构分析表明 ,该晶体为单斜结构。在室温下分别以X射线和紫外光为激发源测量了该晶体的发射光谱 ,获得的发射波长分别为 4 0 3nm和 4 2 0nm ,光衰减时间为 4 1ns,光产额达 32 0 0 0p/MeV。发射光谱的双峰结构以及晶体的发光特性证明其发光源于Ce3 + 离子的 5d1→5F5/ 2 和 5d1→5F7/ 2 跃迁。 展开更多
关键词 Czochralski法 lu2sio5:ce晶体 晶体生长 发光特性 硅酸镥
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Lu2SiO5:Ce透明薄膜改性及其发光性能 被引量:1
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作者 范洋洋 刘小林 +3 位作者 顾牡 倪晨 黄世明 刘波 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2011年第2期344-348,共5页
Lu2SiO5∶Ce具有高密度、高光产额、快衰减等优点,是一种性能优异的新型X射线闪烁薄膜材料。本文采用溶胶-凝胶工艺和旋涂技术,以无机盐为原料、2-甲氧基乙醇为溶剂、聚乙二醇(PEG)为改性剂,在石英基片上成功制备出Lu2SiO5∶Ce透明薄膜... Lu2SiO5∶Ce具有高密度、高光产额、快衰减等优点,是一种性能优异的新型X射线闪烁薄膜材料。本文采用溶胶-凝胶工艺和旋涂技术,以无机盐为原料、2-甲氧基乙醇为溶剂、聚乙二醇(PEG)为改性剂,在石英基片上成功制备出Lu2SiO5∶Ce透明薄膜,较为详细地研究了PEG对该薄膜发光性能的影响。结果表明当采用浓度为12.5%的PEG200时,所制备薄膜的质量和发光强度最为理想;通过多次旋涂,Lu2SiO5∶Ce透明薄膜厚度可达0.9μm。 展开更多
关键词 lu2sio5ce薄膜 溶胶-凝胶法 PEG 发光性能
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Lu_2SiO_5∶Ce荧光粉的热释光特性研究
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作者 吴飞 刘小林 +3 位作者 顾牡 倪晨 黄世明 刘波 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2012年第2期411-414,共4页
采用溶胶-凝胶(Sol-Gel)技术,分别在空气中和石墨提供的弱还原气氛下制备出Lu2SiO5∶Ce0.006荧光粉。通过分析样品的结构,光致激发、发射谱和热释光谱等特性,发现弱还原气氛下制备的样品不仅光致发光强度比空气中的强,而且热释光曲线中5... 采用溶胶-凝胶(Sol-Gel)技术,分别在空气中和石墨提供的弱还原气氛下制备出Lu2SiO5∶Ce0.006荧光粉。通过分析样品的结构,光致激发、发射谱和热释光谱等特性,发现弱还原气氛下制备的样品不仅光致发光强度比空气中的强,而且热释光曲线中598K处的高温热释光峰也得到了抑制。进一步考察空气中制备的Lu2SiO5∶Ce0.006,Kx(x=0.01~0.08)荧光粉,结果表明就光致发光和热释光特性而言,K+共掺杂具有与还原气氛类似的作用。综合以上两方面分析结果,可认为598K处热释光峰是由与Ce4+相关的缺陷引起的,并对K+共掺杂LSO∶Ce发光增强的原因给出了合理解释。 展开更多
关键词 lu2sio5ce荧光粉 K%PluS%共掺杂 光致发光 热释光谱 ce4%PluS%缺陷
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Exploring the energy transfer processes in Lu2(1-x)Y2xSiO5:Ce crystals 被引量:3
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作者 Tiantian Wang Dongzhou Ding +2 位作者 Xiaopu Chen Wei Hou Junjie Shi 《Journal of Rare Earths》 SCIE EI CAS CSCD 2018年第7期685-689,共5页
A systematical exploration of energy transfer processes in Lu2(1-x)Y2xSiO5:Ce(LYSO) crystals under vacuum ultraviolet-ultraviolet(VUV-UV) excitation was implemented. The relationship between energy transfer and... A systematical exploration of energy transfer processes in Lu2(1-x)Y2xSiO5:Ce(LYSO) crystals under vacuum ultraviolet-ultraviolet(VUV-UV) excitation was implemented. The relationship between energy transfer and scintillation properties was established. It is revealed that there are mainly three energy transfer types in the crystal i.e. host → Ce1/Ce2/STEs, Ce1 →Ce2 and STEs → Ce1/Ce2. The influence of Y content of the LYSO crystals on the energy transfer efficiency of the above processes was carefully analyzed. Besides, we find a special component of the crystal i.e. Y content = 45 at% at which the energy resolution and light output of the crystal perform the worst. 展开更多
关键词 lu2(1-x)Y2xsio5 ce Energy transfer ce1 ce2 Self-trapped excitons Rare earths
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Pulling growth technique towards rare earth single crystals 被引量:10
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作者 SUN CongTing XUE DongFeng 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2018年第9期1295-1300,共6页
Pulling growth technique serves as a popular method to grow congruent melting single crystals with multiscale sizes ranging from micrometers to centimeters.In order to obtain high quality single crystals,the crystal c... Pulling growth technique serves as a popular method to grow congruent melting single crystals with multiscale sizes ranging from micrometers to centimeters.In order to obtain high quality single crystals,the crystal constituents would be arranged at the lattice sites by precisely controlling the crystal growth process.Growing interface is the position where the phase transition of crystal constituents occurs during pulling growth process.The precise control of energy at the growing interface becomes a key technique in pulling growth.In this work,we review some recent advances of pulling technique towards rare earth single crystal growth.In Czochralski pulling growth,the optimized growth parameters were designed for rare earth ions doped Y_3Al_5O_(12)and Ce:(Lu_(1-x)Y_x)_2Si O_5on the basis of anisotropic chemical bonding and isotropic mass transfer calculations at the growing interface.The fast growth of high quality rare earth single crystals is realized by controlling crystallization thermodynamics and kinetics in different size zones.On the other hand,the micro pulling down technique can be used for high throughput screening novel rare earth optical crystals.The growth interface control is realized by improving the crucible bottom and temperature field,which favors the growth of rare earth crystal fibers.The rare earth laser crystal fiber can serve as another kind of laser gain medium between conventional bulk single crystal and glass fiber.The future work on pulling technique might focus on the mass production of rare earth single crystals with extreme size and with the size near that of devices. 展开更多
关键词 pulling growth technique rare earth single crystals Czochralski pulling growth micro pulling down growth Y3Al5O12 ce:(lu1-xyx)2sio5 chemical bonding theory of single crystal growth
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