Department of Physics, Sri Venkateswara University, Tirupati 517 502, India.
Spectrochim Acta A Mol Biomol Spectrosc. 2013 Mar;104:445-50. doi: 10.1016/j.saa.2012.11.088. Epub 2012 Dec 5.
Glasses with chemical composition of (62-x) TeO(2)+25 ZnO+8 K(2)O+5 CaO+x Sm(2)O(3) (TZKCSmx; x=0.1, 0.5, 1.0, 1.5 mol%) were prepared by melt quenching technique. The absorption spectrum was recorded in the UV-visible and NIR regions. The oscillator strengths of absorption bands were obtained by measuring the area under the bands. Judd-Ofelt analysis has been carried out to estimate the host dependent J-O intensity Ω(λ) (λ=2, 4, 6) parameters by least squares fitting approach. Photoluminescence spectra recorded in the visible region revealed intense green, orange and red emission bands in all the glasses, corresponding to the (4)G(5/2)→(6)H(5/2), (4)G(5/2)→(6)H(7/2) and (4)G(5/2)→(6)H(9/2) transitions respectively. From the emission spectra and J-O intensity parameters, various radiative parameters were calculated from the excited (4)G(5/2) to the lower lying (6)H(J) (J=5/2, 7/2, 9/2, 11/2) multiplet. Quenching of luminescence with the increase of Sm(3+) ions concentration has been observed. Decay times of excited (4)G(5/2) state decrease with the increase of the Sm(3+) ions concentration. The energy transfer mechanism that leads to the quenching of (4)G(5/2) state lifetime has been discussed. Inokuti-Hirayama (I-H) model was used to evaluate various energy transfer parameters, which are the qualitative indicators for the interaction among Sm(3+) ions.
用熔融淬火技术制备了组成分别为(62-x)TeO(2)+25ZnO+8K(2)O+5CaO+xSm(2)O(3)(TZKCSmx;x=0.1、0.5、1.0、1.5mol%)的玻璃。记录了紫外可见和近红外区域的吸收光谱。通过测量带的面积获得吸收带的振子强度。通过最小二乘法拟合方法进行了 Judd-Ofelt 分析,以估计与主体相关的 J-O 强度 Ω(λ)(λ=2、4、6)参数。在可见区域记录的光致发光光谱显示,所有玻璃中都有强烈的绿色、橙色和红色发射带,分别对应于(4)G(5/2)→(6)H(5/2)、(4)G(5/2)→(6)H(7/2)和(4)G(5/2)→(6)H(9/2)跃迁。从发射光谱和 J-O 强度参数中,从激发的(4)G(5/2)到较低的(6)H(J)(J=5/2、7/2、9/2、11/2)多重态,计算了各种辐射参数。随着 Sm(3+)离子浓度的增加,发光被猝灭。激发的(4)G(5/2)态的衰减时间随着 Sm(3+)离子浓度的增加而降低。讨论了导致(4)G(5/2)态寿命猝灭的能量转移机制。Inokuti-Hirayama(I-H)模型用于评估各种能量转移参数,这些参数是 Sm(3+)离子之间相互作用的定性指标。