首页|多功能硅酸铋晶体的生长与掺杂

多功能硅酸铋晶体的生长与掺杂

Growth and doping of BSO crystals for scintillation,laser and LED applications

扫码查看
硅酸铋(Bi4Si3O12,BSO)晶体是重要的闪烁材料,具有较快的衰减时间、适中的熔点和密度、原料成本低等优势.掺杂不仅能够提高BSO晶体闪烁性能,还可以使其成为多功能材料,比如荧光晶体、激光晶体.总结了BSO晶体的主要研究进展,采用坩埚下降法成功生长了大尺寸BSO晶体,浓度 3%以上的稀土掺杂能有效抑制组分偏析;稀土掺杂BSO晶体是导热性能良好的荧光发光材料,紫外光激发下Dy掺杂BSO晶体发黄光,Dy/Tm共掺BSO晶体可实现白光LED发光;研究了Yb、Er、Ho、Tm等稀土掺杂BSO晶体的光谱特性,在Ho:BSO、Tm:BSO晶体中分别实现了 0.73 W、0.65 W的激光输出;纯BSO晶体是以Bi3+为发光中心的闪烁晶体,微量Dy掺杂可使BSO晶体光输出提高50%,1%Ta掺杂也能显著提高光输出;BGSO混晶也具有闪烁、激光等发光性能,通过调节组分可以开发出梯度闪烁晶体,稀土掺杂BGSO还可能成为激光晶体.
Bismuth silicate(Bi4Si3O12,BSO)single crystal is an important scintillator with the advantages of faster decay time,suitable melting point and density,low cost of raw materials.Doping is the way to improve scintillation properties of BSO crystal.Furthermore,doping makes it to be a multi-functional material,such as phosphor and laser crystal.In this review,we summarized the progress of BSO crystal in our lab.Large size BSO crystal has been grown by the modified Bridgman method,and it was found that the compositional segregation can be eliminated by doping more than 3%rare earth.Rare earth doped BSO crystals are phosphors with good thermal conductivity for high power LED applications.Dy:BSO emits yellow light and Dy/Tm:BSO emits white light.The spectroscopic characteristics of BSO crystals doped with Yb,Er,Ho and Tm have been investigated.The laser outputs of 0.73 and 0.65 W were realized in Ho:BSO and Tm:BSO crystals,respectively.BSO crystal emits light with the luminescence center of Bi3+ exited by X-ray or γ-ray.It was found that the light output of BSO crystals can be improved remarkable by doping small amount of Dy2O3 or about 1%Ta2O5.The mixed crystals of BSO and BGO,i.e.,BGSO,are novel scintillation and laser materials and Re-doped BGSO crystals are expected to be potential laser materials.

bismuth silicate(BSO)crystal growthscintillationphosphorlaser

徐家跃、张彦、田甜、陈媛芝、申慧、肖学峰、熊正烨、李永攀、马云峰

展开 >

上海应用技术大学材料科学与工程学院,上海 201418

北方民族大学电气信息工程学院,银川 750021

广东海洋大学电子与信息工程学院,广东湛江 524088

硅酸铋 晶体生长 闪烁体 荧光体 激光

国家自然科学基金国家自然科学基金国家重点基础研究发展计划(973计划)前期专项上海市优秀学科带头人项目

51572175619650012011CB61231010520501200

2024

应用技术学报
上海应用技术学院

应用技术学报

影响因子:0.195
ISSN:2096-3424
年,卷(期):2024.24(1)
  • 58