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Broadband fluorescence emission of Eu3+ doped germanotellurite glasses for fiber-based irradiation light sources

机译:掺Eu 3 + 的锗锂玻璃纤维的宽带荧光发射

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Eu3+ doped fiber-based germanotellurite (NZPGT) glasses with medium-low maximum phonon energy of 782 cm−1 have been fabricated and characterized. Judd-Ofelt intensity parameters Ω2 (6.25 × 10−20 cm2) and Ω4 (1.77 × 10−20 cm2) indicate a high asymmetrical and covalent environment around Eu3+ in the optical glasses. The spontaneous emission probability of the dominant transition 5D0→7F2 peaking at 612.5 nm and the corresponding maximum stimulated emission cross-section were derived to be 445.7 s−1 and 2.05 × 10−21 cm2, respectively, confirming the effectiveness of the red fluorescence emission. The quantum yield was derived to be 12% under 391 nm LED excitation, and approximately 88% photons have been demonstrated in wavelength range of 600−720 nm, indicating that Eu3+ doped NZPGT glasses under proper excitation conditions are promising optical materials for fiber-based irradiation light sources that are competent to activate diverse photodynamic therapy photosensitizers.
机译:制备并表征了Eu3 +掺杂的纤维基锗铁矿(NZPGT)玻璃,其中低声子能量为782 cm-1。 Judd-Ofelt强度参数Ω2(6.25×10-20 cm2)和Ω4(1.77×10-20 cm2)表示光学玻璃中Eu3 +周围的高度非对称共价环境。主峰跃迁5D0→7F2在612.5 nm处达到峰值的自发发射概率和相应的最大受激发射截面分别为445.7 s-1和2.05×10-21 cm2,证实了红色荧光发射的有效性。在391 nm LED激发下,量子产率为12%,并且在600-720 nm的波长范围内已证明了约88%的光子,这表明在适当激发条件下掺Eu3 +的NZPGT玻璃是有前途的基于光纤的光学材料能够激活各种光动力疗法光敏剂的辐照光源。

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