首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Magnetic field modulated upconversion luminescence in NaYF4: Yb,Er nanoparticles
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Magnetic field modulated upconversion luminescence in NaYF4: Yb,Er nanoparticles

机译:NaYF4:Yb,Er纳米粒子中的磁场调制上转换发光

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Upconversion, an anti-Stokes process that converts two or more lower energy photons into a higher energy photon, has been paid growing attention due to its wide range of applications ranging from photonics to bioscience. This process, however, suffers from poor efficiency which strongly hampers its application and commercialization. We show here that the upconversion luminescence of NaYF4: Yb, Er nanoparticles can be modulated by the magnetic field and an enhancement of upconversion intensity by a factor of 2.5 is obtained at 20 T. The increased upconversion luminescence is interpreted in terms of enhanced energy transfer from Yb3+ to Er3+ and the enhanced non-radiative transition from S-4(3/2) to F-4(9/2) and I-4(11/2) to I-4(13/2) of Er3+ ions. In addition, continuous spectral broadening and shift of f-f transitions with increasing magnetic field intensity are observed, which are ascribed to the Zeeman effect and the difference in the g factor of Zeeman levels. The results demonstrated here may open a new gate towards the modulation of the excited state process by the magnetic field.
机译:上转换是一种将两个或两个以上能量较低的光子转换为能量较高的光子的反斯托克斯过程,由于其从光子学到生物科学的广泛应用而受到越来越多的关注。然而,该方法效率低下,严重阻碍了其应用和商业化。我们在这里显示NaYF4:Yb,Er纳米粒子的上转换发光可以通过磁场进行调制,并且在20 T时获得2.5的上转换强度增强。上转换发光的增加是通过增强的能量传递来解释的从Yb3 +到Er3 +以及增强的从Er-4 +离子的S-4(3/2)到F-4(9/2)和I-4(11/2)到I-4(13/2)的非辐射跃迁。此外,观察到随着磁场强度的增加,谱线不断扩宽和f-f跃迁,这归因于塞曼效应和塞曼能级的g因子之差。此处显示的结果可能为磁场调制激发态过程打开新的大门。

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