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首页> 外文期刊>CERAMICS INTERNATIONAL >Reinterpretation of the red emission pathway in beta-NaYF4:Yh(3+), Er3+
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Reinterpretation of the red emission pathway in beta-NaYF4:Yh(3+), Er3+

机译:再诠释β-nayf4中的红色发射途径:YH(3+),ER3 +

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The beta-NaYF4:Yb3+, Er3+ phosphor is well known as one of the high-efficiency upconversion (UC) phosphors. Of the three main emission bands (blue, green and red), the red emission belongs to the "optical window" that can penetrate the biological tissues. For this reason, this phosphor has been received much attention as a luminescent probe for biomedical imaging. This study interpreted the red emission mechanism by energy back transfer (EBT) process by analyzing both the photoluminescence and upconversion photoluminescence properties. Herein, the another pathway of red emission in beta-NaYF4:Yb3+, Er3+ phosphor was demonstrated, which belongs to two EBT processes such as S-4(3/2)-> I-4(13/2) (Er3+:F-2(7/2)-> F-2(5/2) (Yb3+ and (4)G(11/2) -> F-4(9/2) (Er3+):F-2(7/2)-> F-2(5/2) (Yb3+). Since two EBT routes play a key role for generating the red emission, the currently accepted UC mechanism for this phosphor should be modified accordingly.
机译:β-NayF4:YB3 +,ER3 +磷光体是众所周知的一种高效率上变化(UC)磷光体之一。 在三个主要发射带(蓝色,绿色和红色)中,红色排放属于可以穿透生物组织的“光学窗口”。 因此,这种磷光体已被认为是用于生物医学成像的发光探针。 该研究通过分析光致发光和上变光致发光性能来解释红色发射机理通过能量回转移(EBT)过程。 在此,证明了β-NayF4:YB3 +,ER3 +磷光体中的另一种途径,其属于两个EBT过程,如S-4(3/2) - > I-4(13/2)(ER3 +:F. -2(7/2) - > F-2(5/2)(YB3 +和(4)G(11/2) - > F-4(9/2)(ER3 +):F-2(7/2 ) - > F-2(5/2)(YB3 +)。由于两个EBT路径播放了用于产生红色发射的关键作用,因此应相应地修改当前接受的此磷光体的UC机制。

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