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首页> 外文期刊>Optics and Spectroscopy >Sensitization of Luminescence of Antimony(III) in Complexes with 6-Methylquinoline in the Spectral Region of the A Band
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Sensitization of Luminescence of Antimony(III) in Complexes with 6-Methylquinoline in the Spectral Region of the A Band

机译:A谱带中6-甲基喹啉配合物中锑(III)的发光敏化

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The luminescence properties of complexes of antimony (III) halides with 6-methylquinoline: (C_(10)H_9NH)_4Sb_2Cl_(10)(I), (C_(10)H_9NH)_3SbBr_6 (II), and (C_(10)H_9NH)_4Sb_2I_(10) (III) are studied. From analysis of data obtained by UV, photoelectron, and luminescence spectroscopy, it is concluded that the decrease in the energy gap between the highest occupied and lowest unoccupied molecular orbitals of the 6-methylquinoline molecules and antimony (III) halides is responsible for quenching of the luminescence of the 6-methylquinolinium cations and for occurrence of intrinsic luminescence of the antimony (III) ions in going from complex I to complexes II and III.
机译:卤化锑(III)与6-甲基喹啉的配合物的发光特性:(C_(10)H_9NH)_4Sb_2Cl_(10)(I),(C_(10)H_9NH)_3SbBr_6(II)和(C_(10)H_9NH )_4Sb_2I_(10)(III)的研究。通过对紫外,光电子和发光光谱数据的分析,得出的结论是,6-甲基喹啉分子的最高占据和最低未占据分子轨道与卤化锑(III)之间的能隙减小是造成卤代苯猝灭的原因。从配合物I到配合物II和III时,6-甲基喹啉鎓阳离子的发光以及锑(III)离子固有发光的发生。

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