Kumar M, Vijayalakshmi R P, Ratnakaram Y C
Department of Physics, Sri Venkateswara University, Tirupati 517502, A.P, India.
Department of Physics, Sri Venkateswara University, Tirupati 517502, A.P, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2023 Dec 5;302:123096. doi: 10.1016/j.saa.2023.123096. Epub 2023 Jul 6.
Bismuth flourophosphate glasses doped with Er ions (0.5 mol %) were synthesized using different modifier fluorides with the aid of melt quenching route. The glass samples were labelled as PBiBaAFT (where AF = Li, Na, Mg, K, Ca and Sr fluorides). The influence of cations of network modifiers on the structure and thereby spectroscopic properties of Er ions was analysed via Powder XRD, FTIR, optical absorption and photoluminescence. Existence of relevant vibrational groups and modifications in structure due to the different admixture modifier cations were recognized via FTIR spectra. The Judd-Ofelt parameters abide by the trend Ω > Ω > Ω in the PBiBaLiT, PBiBaKT, PBiBaCaTand PBiBaSrT glasses whereas the trend was noticed to be Ω > Ω > Ω for PBBiNaT and PBiBaMgT glasses respectively. The visible emission spectra were recorded by exciting at 379 nm exhibit three emission bands centered at 526 nm, 544 nm and 686 nm. NIR emission spectra were recorded by exciting at 980 nm exhibit broad emission at 1535 nm. Admixture of different cations could exhibit change in luminescence intensity and radiative parameters of the prepared glasses. Spectroscopic parameters such as radiative transition probability (A), branching ratio (β), absorption cross section (∑), effective bandwidth (Δλ) and optical band gain (σ × Δλ) are calculated. The mid infrared spectroscopic features were investigated.
采用熔体淬火法,借助不同的改性氟化物合成了掺杂铒离子(0.5摩尔%)的铋氟磷酸盐玻璃。玻璃样品标记为PBiBaAFT(其中AF = 锂、钠、镁、钾、钙和锶的氟化物)。通过粉末X射线衍射、傅里叶变换红外光谱、光吸收和光致发光分析了网络改性剂阳离子对结构以及铒离子光谱性质的影响。通过傅里叶变换红外光谱识别了相关振动基团的存在以及由于不同的混合改性剂阳离子导致的结构变化。在PBiBaLiT、PBiBaKT、PBiBaCaT和PBiBaSrT玻璃中,Judd-Ofelt参数遵循Ω₂ > Ω₄ > Ω₆的趋势,而在PBBiNaT和PBiBaMgT玻璃中,趋势分别为Ω₂ > Ω₆ > Ω₄。通过在379 nm激发记录的可见发射光谱显示出以526 nm、544 nm和686 nm为中心的三个发射带。通过在980 nm激发记录的近红外发射光谱显示在1535 nm处有宽发射。不同阳离子的混合会使制备的玻璃的发光强度和辐射参数发生变化。计算了诸如辐射跃迁概率(A)、分支比(β)、吸收截面(∑)、有效带宽(Δλ)和光带增益(σ × Δλ)等光谱参数。研究了中红外光谱特征。