1.厦门大学 材料学院, 福建 厦门 361005
2.厦门大学 固体表面物理化学国家重点实验室, 福建 厦门 361005
[ "温海洋(1999-),男,河南信阳人,硕士研究生在读,2021年于燕山大学获得学士学位,主要从事激光照明固态发光体制备的研究。E-mail:20720211150114@xmu.stu.edu.cn" ]
[ "周天亮(1980-),男,内蒙古包头人,博士,高级工程师,2012年于北京科技大学获得博士学位,主要从事近红外发光材料、新型LED/LD器件的开发。E-mail:bible2@163.com" ]
[ "解荣军(1969-),男,江苏镇江人,博士,教授,1998年于中国科学院上海硅酸盐研究所获得博士学位,主要从事稀土掺杂发光材料、量子点和发光与显示器件的研究。 E-mail:rjxie@xmu.edu.cn" ]
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温海洋,张晨杰,周天亮等.Ce3+-Cr3+共掺杂Ba3Sc4O9荧光材料的发光性能[J].发光学报,
Wen Haiyang,Zhang Chenjie,Zhou Tianliang,et al.Luminescence Properties of Ce3+-Cr3+ co-Doped Ba3Sc4O9 Phosphors[J].Chinese Journal of Luminescence,
温海洋,张晨杰,周天亮等.Ce3+-Cr3+共掺杂Ba3Sc4O9荧光材料的发光性能[J].发光学报, DOI:10.37188/CJL.20230225
Wen Haiyang,Zhang Chenjie,Zhou Tianliang,et al.Luminescence Properties of Ce3+-Cr3+ co-Doped Ba3Sc4O9 Phosphors[J].Chinese Journal of Luminescence, DOI:10.37188/CJL.20230225
红光-近红外光谱技术在医疗领域具有广泛的应用。但对于当下采用蓝光LED激发荧光材料实现红光-近红外光谱输出的器件结构而言,则普遍存在蓝光过剩的问题。本文提出了通过构筑Ce,3+,→Cr,3+,能量传递,从而实现抑制器件蓝光输出的策略。以Ba,3,Sc,4,O,9,为研究对象,采用Ce,3+,/Cr,3+,共掺杂,研究了其发光性能。结果表明,共掺杂的Ba,3,Sc,4,O,9,:Ce,3+,/Cr,3+,同时具备了红光和近红外光发射能力,发射主峰分别位于585 nm和835 nm;Ce,3+,→Cr,3+,能量传递效率达50.92%。所封装的近红外LED器件的蓝光强度下降了78%,而Cr,3+,的发射强度增至181%。
The red-near-infrared spectrum is widely used in many fields such as medical treatments. However, there is an excess of blue luminescence caused by red-near-infrared device excited by 450 nm LEDs. In this work, we proposed to construct the Ce,3+,→Cr,3+, energy transfer to suppress the blue emission from the lighting devices. The Ce,3+,/Cr,3+, co-doped Ba,3,Sc,4,O,9 ,phosphors,were prepared and their photoluminescence were investigated. The Ba,3,Sc,4,O,9,:Ce,3+,/Cr,3+, phosphors exhibit double emission bands centered at 585 nm and 835 nm, respectively. The blue emission remained in the prepared LED device is reduced by 78%, and the emission intensity of Cr,3+, is increased up to 181% due to the energy transfer efficiency as high as 50.92% between Ce,3+, and Cr,3+,.
近红外Ce3+/Cr3+共掺杂Ba3Sc4O9能量传递
near-infraredCe3+/Cr3+ co-dopedBa3Sc4O9energy transfer
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