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Nd3+螯合物的含氢有机溶液光谱性能研究
引用本文:叶云霞,余柯涵,钱列加,范滇元,彭波. Nd3+螯合物的含氢有机溶液光谱性能研究[J]. 物理学报, 2006, 55(12): 6424-6429
作者姓名:叶云霞  余柯涵  钱列加  范滇元  彭波
作者单位:(1)复旦大学信息科学与工程学院,上海 200433; (2)中国科学院上海光学精密机械研究所高功率激光物理国家实验室,上海 201800; (3)中国科学院上海光学精密机械研究所高功率激光物理国家实验室,上海 201800;江苏大学机械学院,镇江 212013
摘    要:研究了Nd(TTA)3螯合物溶于二甲基甲酰胺溶剂的光谱性质,溶液中所有氢未置换为氘.测量了这种溶液体系的吸收谱、荧光谱和荧光寿命.在898和1058 nm波长处观察到明显的Nd3+荧光特征峰.用Judd-Ofelt理论对吸收谱进行分析计算,得到了三个强度参数Ωt(t=2,4,6)分别为Ω2=4.9×10-20 cm2, Ω4=5.1×10-20 cm2Ω6=2.5×10-20 cm2.利用强度参数计算了4F3/2能级与4I9/24I11/2之间的跃迁强度Sed、自发辐射系数Aed以及荧光分支比β等,估算了4F3/2能级的辐射跃迁寿命τr=682 μs.实测1058和898 nm波长处荧光寿命τ大约为460和505 μs,因此荧光量子效率分别高达0.67和0.74.荧光量子效率高表明Nd3+在这种溶液中无辐射跃迁比较弱;强度参数Ω2比较大,表明Nd3+在溶液中具有不对称配位场环境,不对称的配位场环境可大大促进Nd3+吸收激发能量.光谱质量因子Ω4/Ω6>1,使得898 nm的辐射强于1058 nm的辐射.关键词:Nd有机溶液光谱性能Judd-Ofelt理论

关 键 词:Nd  有机溶液  光谱性能  Judd-Ofelt理论
文章编号:1000-3290/2006/55(12)/6424-06
收稿时间:2006-03-10
修稿时间:2006-03-102006-06-26

Spectral properties of hydrogen-containing organic solution of neodymium chelate
Ye Yun-Xia,Yu Ke-Han,Qian Lie-Jia,Fan Dian-Yuan,Peng Bo. Spectral properties of hydrogen-containing organic solution of neodymium chelate[J]. Acta Physica Sinica, 2006, 55(12): 6424-6429
Authors:Ye Yun-Xia  Yu Ke-Han  Qian Lie-Jia  Fan Dian-Yuan  Peng Bo
Abstract:Tris-thenoyltrifluroacetonate of Nd3+ has been prepared and dissolved in DMF solation with very high concentration, and the contained hydrogen has not been substituted by deuterium. The absorption spectrum, emission spectrum, and fluorescence lifetime of the solution were measured. Very obvious characteristic fluorescence peaks were observed at 898 and 1058 nm. Based on Judd-Ofelt theory, three intensity parameters were obtained: Ω2=4.9×10-20 cm2, Ω4=5.1×10-20 cm2 and Ω6=2.5×10-20 cm2. Line strengths Scal, oscillator strengths fcal, radiative transition probabilities Aed, radiative lifetimes τr and branch ratios β were calculated too. The measured lifetime τ of 1058 nm peak is 460 μs, and that of 898 nm 505 μs. Comparison between theoretically computed radiative lifetime τr (682 μs) and the measured lifetime indicates that the non-radiative transition probability of the solution is very low and the fluorescence quantum efficiency very high. High values of three intensity parameters prove the high asymmetric surroundings of Nd3+, which is important for Nd3+ to absorb the excitation energy. Spectropic quality factor Ω4/Ω6>1 makes radiation at 898 nm stronger than at 1058 nm.
Keywords:Nd
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