Laser and Spectroscopy Laboratory, Department of Applied Physics, Indian School of Mines, Dhanbad-826004, Jharkhand, India.
Dalton Trans. 2014 Jan 7;43(1):111-8. doi: 10.1039/c3dt51773j.
The frequency upconversion emissions in the Er(3+)/Er(3+)-Yb(3+) doped/codoped hexagonal shaped La2O3 phosphor characterized by X-ray diffraction (XRD) upon excitation with 980 nm and 800 nm CW lasers have been investigated. The upconversion emissions corresponding to the (2)H(9/2) → (4)I(15/2), (2)H(11/2) → (4)I(15/2), (4)S(3/2) → (4)I(15/2) and (4)F(9/2) → (4)I(15/2) transitions peaking at 409 nm, 523 nm, 548 nm and 660 nm have been observed under 980 nm excitation whereas 523 nm, 548 nm and 660 nm upconversion emission bands have been visualized under 808 nm excitation. The upconversion emission intensity of Er(3+) ions is enhanced by several times due to the codoping with Yb(3+) ions, under 980 nm excitation while there is a reduction in intensity in the codoped sample under 808 nm excitation. The decay curve analysis for the green UC emission band corresponding to the (4)S(3/2) → (4)I(15/2) transition in the Er(3+)/Er(3+)-Yb(3+) doped/codoped La2O3 phosphor upon 980 nm excitation has been done. The colour coordinate of the phosphor sample has been calculated at different pump powers and its value is observed to be almost similar to that of the standard green colour and also independent of the excitation power density. The effect of temperature on the upconversion emission intensity of the green emissions has been determined and noted that the present phosphor material can be used in making temperature sensing device upto 600 K.
在 980nm 和 800nm CW 激光激发下,通过 X 射线衍射(XRD)对掺铒/共掺铒-镱的六方形状 La2O3 荧光粉的频率上转换发射进行了研究。在 980nm 激发下,观察到对应于(2)H(9/2)→(4)I(15/2)、(2)H(11/2)→(4)I(15/2)、(4)S(3/2)→(4)I(15/2)和(4)F(9/2)→(4)I(15/2)跃迁的上转换发射峰位于 409nm、523nm、548nm 和 660nm 处,而在 808nm 激发下,观察到 523nm、548nm 和 660nm 的上转换发射带。在 980nm 激发下,由于共掺 Yb(3+)离子,Er(3+)离子的上转换发射强度增强了几倍,而在 808nm 激发下,共掺样品的强度降低。对掺铒/共掺铒-镱的 La2O3 荧光粉在 980nm 激发下对应于(4)S(3/2)→(4)I(15/2)跃迁的绿光上转换发射带的衰减曲线进行了分析。在不同泵浦功率下计算了荧光粉样品的色坐标,其值与标准绿光值几乎相同,并且与激发功率密度无关。确定了温度对绿光上转换发射强度的影响,并指出该荧光粉材料可用于在 600K 范围内制作温度传感器件。