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Title
Japanese: 
English:Enhanced Lasing Properties of Dissymmetric Eu(III) Complex with Bidentate PhosphineLigands 
Author
Japanese: Nakamura Kazuki, Hasegawa Yasuchika, Kawai Hideki, Yasuda Naoki, Kanehisa Nobuko, Kai Yasushi, Nagamura Toshihiko, Yanagida Shozo, 和田 雄二.  
English: Nakamura Kazuki, Hasegawa Yasuchika, Kawai Hideki, Yasuda Naoki, Kanehisa Nobuko, Kai Yasushi, Nagamura Toshihiko, Yanagida Shozo, Wada Yuji.  
Language English 
Journal/Book name
Japanese: 
English:J. Phys. Chem. A 
Volume, Number, Page Vol. 111    No. 16    pp. 3029-3037
Published date Aug. 2007 
Publisher
Japanese: 
English:American Chemical Society 
Conference name
Japanese: 
English: 
Conference site
Japanese: 
English: 
Abstract The luminescent and lasing properties of Eu(III) complexes were enhanced by using an dissym. Eu(III) complex. The photophys. properties (the emission spectral shapes, the emission lifetimes, the emission quantum yields, and the stimulated emission cross section (SEC)) were found to be dependent on the geometrical structures of Eu(III) complexes. The geometrical structures of Eu(III) complexes were detd. by X-ray single crystal analyses. The sym. group of Eu(hfa)3(BIPHEPO) (tris(hexafluoroacetylacetonato)europium(III) 1,1'-biphenyl-2,2'-diylbis(diphenylphosphine oxide)) was found to be C1, which was more dissym. than Eu(hfa)3(TPPO)2 (tris(hexafluoroacetylacetonato)europium(III) 1,2-phenylenebis(diphenylphosphine oxide): C2 symmetry) and Eu(hfa)3(OPPO)2 (tris(hexafluoroacetylacetonato)europium(III) 1,2-phenylenebis(diphenylphosphine oxide): C2 symmetry). The anal. data were supported by Judd-Ofelt anal. The most dissym. Eu(III) complex, Eu(hfa)3(BIPHEPO), showed large electron transition probability and large SEC (4.64  10-20 cm2). The SEC of Eu(hfa)3(BIPHEPO) was superior to even the values of Nd-glass laser for practical use (1.6-4.5  10-20 cm2). The lasing properties of Eu(III) complexes in polymer thin film were measured by photopumping of a Nd:YAG laser (355 nm). The threshold energy of lasing oscillation was found to be 0.05 mJ. The increasing rate of the lasing intensity of Eu(hfa)3(BIPHEPO) as a function of the excitation energy was much larger than that of Eu(hfa)3(TPPO)2 and Eu(hfa)3(OPPO)2. The dissym. structure of Eu(hfa)3(BIPHEPO) promoted the enhancement of the lasing property.

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