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Gd2O3:Er3,Yb3+纳米线中的上转换发光、强度饱和效应和热效应

Upconversion luminescence, intensity saturation effect, and thermal effect in Gd2O3:Er3,Yb3+ nanowires.

作者信息

Lei Yanqiang, Song Hongwei, Yang Linmei, Yu Lixin, Liu Zhongxin, Pan Guohui, Bai Xue, Fan Libo

机构信息

Key Laboratory of Excited State Physics, Changchun Institute of Optics, Fine mechanics and Physics, Chinese Academic of Sciences, Changchun 130033, People's Republic of China.

出版信息

J Chem Phys. 2005 Nov 1;123(17):174710. doi: 10.1063/1.2087487.

Abstract

In this paper, the upconversion luminescent properties of Gd2O3:Er3+,Yb3+ nanowires as a function of Yb concentration and excitation power were studied under 978-nm excitation. The results indicated that the relative intensity of the red emission (4F(9/2)-4I(15/2)) increased with increasing the Yb3+ concentration, while that of the green emission (4S(3/2)/2H(11/2)-4I(15/2)) decreased. As a function of excitation power in ln-ln plot, the green emission of 4S(3/2)-4I(15/2) yielded a slope of approximately 2, while the red emission of 4F(9/2)-4I(15/2) yielded a slope of approximately 1. Moreover, the slope decreased with increasing the Yb3+ concentration. This was well explained by the expanded theory of competition between linear decay and upconversion processes for the depletion of the intermediate excited states. As the excitation power density was high enough, the emission intensity of upconversion decreased due to thermal quenching. The thermal effect caused by the exposure of the 978-nm laser was studied according to the intensity ratio of 2H(11/2)-4I(15/2) to 4S(3/2)-4I(15/2). The practical sample temperature at the exposed spot as a function of excitation power and Yb3+ concentration was deduced. The result indicated that at the irradiated spot (0.5 x 0.5 mm2) the practical temperature considerably increased.

摘要

本文研究了在978nm激发下,Gd2O3:Er3+,Yb3+纳米线的上转换发光特性与Yb浓度和激发功率的关系。结果表明,红色发射(4F(9/2)-4I(15/2))的相对强度随Yb3+浓度的增加而增加,而绿色发射(4S(3/2)/2H(11/2)-4I(15/2))的相对强度则降低。在ln-ln图中,作为激发功率的函数,4S(3/2)-4I(15/2)的绿色发射斜率约为2,而4F(9/2)-4I(15/2)的红色发射斜率约为1。此外,该斜率随Yb3+浓度的增加而降低。这可以通过中间激发态耗尽的线性衰减和上转换过程之间竞争的扩展理论得到很好的解释。当激发功率密度足够高时,由于热猝灭,上转换发射强度降低。根据2H(11/2)-4I(15/2)与4S(3/2)-4I(15/2)的强度比,研究了978nm激光照射引起的热效应。推导了暴露点处实际样品温度与激发功率和Yb3+浓度的函数关系。结果表明,在照射点(0.5×0.5mm2)处实际温度显著升高。

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