首页> 外文期刊>RSC Advances >Design, synthesis and characterization of near-infrared long persistent phosphors Ca-4(PO4)(2)O:Eu2+,R3+ (R = Lu, La, Gd, Ce, Tm, Y)
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Design, synthesis and characterization of near-infrared long persistent phosphors Ca-4(PO4)(2)O:Eu2+,R3+ (R = Lu, La, Gd, Ce, Tm, Y)

机译:设计,合成和表征近红外长持续荧光粉Ca-4(PO4)(2)O:Eu2 +,R3 +(R = Lu,La,Gd,Ce,Tm,Y)

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摘要

Near-infrared (NIR) persistent phosphors have many remarkable optical advantages in bioimaging applications. However, only a very few activators and hosts have been found to exhibit NIR persistent luminescence. Here, we report Eu2+-activated phosphate NIR long persistent phosphors, Ca-4(PO4)(2)O:Eu2+,R3+ (R = Lu, La, Gd, Ce, Tm, Y). All the codoped samples showed persistent luminescence peaking at a long wavelength of ca. 690 nm due to the 5d-4f transitions of Eu2+. The persistent luminescence of Ca-3.97(PO4)(2)O:Eu-0.01(2+), Y-0.02(3+) can be detected for 2 h after the removal of excitation. As a key parameter of persistent phosphors, the trap depths can be tuned from 0.62 to 0.77 eV by codoping with trivalent rare earth ions. The I-1-t curves reveal that two effective traps contribute to long persistent luminescence of Y3+, Tm3+ and Ce3+ codoped samples, whereas there is only one effective trap for La3+, Gd3+ and Lu3+ codoped samples, which was confirmed by the thermoluminescence curves of the codoped samples. This investigation provided a new long persistent phosphor which enriches the activator and hosts of existing NIR long persistent phosphors for potential application in vivo bioimaging.
机译:在生物成像应用中,近红外(NIR)持久性磷光体具有许多显着的光学优势。然而,仅发现极少数的活化剂和宿主表现出近红外持续发光。在这里,我们报告Eu2 +活化的磷酸盐NIR长持续发光磷,Ca-4(PO4)(2)O:Eu2 +,R3 +(R = Lu,La,Gd,Ce,Tm,Y)。所有共掺杂的样品在约1000nm的长波长下均显示出持续的发光峰值。由于Eu2 +的5d-4f跃迁而产生690 nm。去除激发后2 h即可检测到Ca-3.97(PO4)(2)O:Eu-0.01(2 +),Y-0.02(3+)的持续发光。作为持久性磷光体的关键参数,可以通过与三价稀土离子共掺杂将陷阱深度从0.62调整到0.77 eV。 I-1-t曲线表明,两个有效陷阱有助于Y3 +,Tm3 +和Ce3 +共掺杂样品的长时间持续发光,而La3 +,Gd3 +和Lu3 +共掺杂样品只有一个有效陷阱,这通过以下方法的热发光曲线得到了证实:共掺杂样品。这项研究提供了一种新的长效持久性磷光体,它丰富了现有NIR长效持久性磷光体的活化剂和主体,可用于体内生物成像的潜在应用。

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