Woo Hyun-Joo, Chung Seock-Jin, Hill Meghan L, Hadrick Kay, Kim Taeho
Department of Biomedical Engineering, Institute for Quantitative Health Science and Engineering, Michigan State University, East Lansing, Michigan 48824, United States.
ACS Appl Nano Mater. 2023 May 18;6(11):9884-9891. doi: 10.1021/acsanm.3c01547. eCollection 2023 Jun 9.
Europium ion-activated calcium silicate phosphors (CaSiO:Eu) with sharp red-light emission were fabricated via the hydrothermal method. The size of CaSiO:Eu phosphors was controlled between 20 and 200 nm by precursor silicate particle sizes. Systematic studies to determine morphology, crystal phase, and photoluminescence (PL) were carried out for all the phosphors, and their optical efficiencies were compared. We found that the luminescence intensity and emission wavelength of CaSiO:Eu phosphors depend on their particle sizes. Particularly, the CaSiO:Eu synthesized with 20 nm silica seed contains the most intense red emission, high color purity, and high PL quantum yield. For the 20 nm-sized CaSiO:Eu phosphor, PL quantum yields are measured to be above 87.95% and high color purity of 99.8%. The unusually high intensity of D → F emission (712 nm) is explained by structural distortion arising from silicate particle size reductions. We show that the obtained phosphor is a suitable candidate for solid-state lighting as a red component through CIE chromaticity coordinate and color purity measurements. Furthermore, the CaSiO:Eu particles are examined for their validity as promising bio-imaging probes through cell labeling and imaging experiments and biodegradability studies.
通过水热法制备了具有尖锐红光发射的铕离子激活硅酸钙荧光粉(CaSiO:Eu)。通过前驱体硅酸盐颗粒尺寸将CaSiO:Eu荧光粉的尺寸控制在20至200纳米之间。对所有荧光粉进行了系统研究以确定其形态、晶相和光致发光(PL),并比较了它们的光学效率。我们发现CaSiO:Eu荧光粉的发光强度和发射波长取决于其颗粒尺寸。特别是,用20纳米二氧化硅晶种合成的CaSiO:Eu具有最强的红色发射、高色纯度和高光致发光量子产率。对于20纳米尺寸的CaSiO:Eu荧光粉,测量得到的光致发光量子产率高于87.95%,色纯度高达99.8%。D→F发射(712纳米)异常高的强度是由硅酸盐颗粒尺寸减小引起的结构畸变所解释的。通过CIE色度坐标和色纯度测量,我们表明所获得的荧光粉作为红色成分是固态照明的合适候选材料。此外,通过细胞标记和成像实验以及生物降解性研究,对CaSiO:Eu颗粒作为有前途的生物成像探针的有效性进行了研究。