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作 者:杨默 黄平 崔彩娥 王磊 田跃 时秋峰 YANG Mo;HUANG Ping;CUI Cai’e;WANG Lei;TIAN Yue;SHI Qiufeng(College of Physics and Optoelectronics,Taiyuan University of Technology,Taiyuan 030024,China)
机构地区:[1]太原理工大学物理与光电工程学院,太原030024
出 处:《太原理工大学学报》2018年第2期234-239,共6页Journal of Taiyuan University of Technology
基 金:国家自然科学基金资助项目(51302182);山西省自然科学基金资助项目(2014011017-3;201601d011030);太原理工大学校基金资助项目(tyut-rc20136a;tyut-rc201497a;2014TD061;2015QN068;2014YQ011)
摘 要:利用高温固相法合成了一种颜色可调的Ca_3Y(PO_4)_3:Eu^(2+)/Sm^(3+)白色荧光粉。X射线衍射图谱证明了掺入Eu^(2+)和Sm^(3+)离子的样品为纯相Ca_3Y(PO_4)_3样品。分析漫反射光谱,样品在250~450nm范围内有较强的吸收,即该荧光粉适用于紫外LED芯片。发射光谱证明,在405nm激发波长下,Eu^(2+)和Sm^(3+)离子被共激发。调节Eu^(2+)和Sm^(3+)离子的掺杂量,其色坐标从蓝绿光区域进入白光区域,最终落在橙红光区域。通过麦卡米经验公式计算该白色荧光粉的相对色温(其色温值为5 058K),进一步证明此荧光粉在室内照明也有着良好的应用前景。研究双掺样品Eu^(2+)离子的荧光寿命也证明了Eu^(2+)与Sm^(3+)之间存在着能量传递,其作用机理主要为电偶极-电偶极相互作用。A single-phased color-tunable phosphor Ca 3Y(PO 4)3:Eu 2+/Sm 3+for WLED was prepared by a conventional solid-state reaction method.X-ray diffraction confirms that the as-prepared samples were single phase Ca 3Y(PO 4)3 phosphors.The obtained phosphors exhibit a strong excitation band between 250 and 450 nm,matching well with the dominant emission band of UV light-emitting-diode(LED)chip.In order to tune the emitting color of Ca 3Y(PO 4)3:Eu 2+phosphor,Sm 3+ions were co-doped in.Under 405 nm excitation,Eu 2+and Sm 3+ions are co-activated so as to produce white light.Meanwhile,the emitting color can be tuned from blue-green to white and eventually to orange-red by precisely controlling the ratio of Eu 2+to Sm 3+.A correlated color temperature(5 058 K)of the sample with white region was calculated,which shows its suitable application for indoor lighting also.Moreover,we also certify the existence of energy transfer from Eu 2+to Sm 3+via electric dipole-dipole interaction.
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