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  • [논문] 양자나노물성: Multimodal emission platform based on Er 3+ /Yb 3+ codoped Ca3Al2Ge3O12 for advanced photonic applications

    • 등록일
      2026.03.31
    • 조회수
      110

•연구자: 물리학과 위상원, 이윤상

 

•발표일: 2026.04.05

 

•DOI: https://doi.org/10.1016/j.jallcom.2026.187483

 

•J.Y. Oh et al., Journal of Alloys and Compounds (Q1), Volume 1061, 187483 (2026)

 

•Abstract
Er3+/Yb3+ co-doped Ca3Al2Ge3O12 (CAG:Er/Yb) phosphors were synthesized and systematically investigated under dual ultraviolet (UV) and near-infrared (NIR) excitation. X-ray diffraction and Rietveld refinement confirmed that the samples constituted a pure garnet phase with minimal structural distortion. The materials exhibited strong visible and NIR emissions, whose color and intensity depended on the excitation wavelength and Er3+ concentration. Under UV excitation, green emission dominated and showed high-temperature sensitivity, whereas under NIR excitation, red emission increased with Er3+ content, thus affording excitation-dependent color tuning. Temperature-dependent spectra from 293 to 673 K showed that the fluorescence intensity ratio between 2H11/2 and 4S3/2 levels could be used for optical thermometry, with a maximum relative sensitivity of 1.70% K−1 demonstrated at 293 K in the up-conversion mode. The results of Judd–Ofelt (J–O) analysis indicated a moderately asymmetric and rigid local environment that supported balanced visible–NIR emission. The coexistence of dual-excitation green/red contrast and NIR emission suggests the presence of additional channels for anticounterfeiting and optical tagging. These results indicate that CAG:Er/Yb is a stable multifunctional oxide phosphor for temperature sensing and photonic security.

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