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首页> 外文期刊>New Journal of Chemistry >X-ray analysis and excited state dynamics in a new class of lanthanide mixed chelates of the type LnPh beta(3)center dot Phen (Ln = Sm, Eu, Gd, Tb)
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X-ray analysis and excited state dynamics in a new class of lanthanide mixed chelates of the type LnPh beta(3)center dot Phen (Ln = Sm, Eu, Gd, Tb)

机译:新型镧系元素LnPh beta(3)中心点Phen(Ln = Sm,Eu,Gd,Tb)的镧系元素混合螯合物的X射线分析和激发态动力学

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A new type of lanthanide complex with a derivative of beta-diketone and phenanthroline, LnPhbeta3.Phen [where Phbeta=CCl3-C(O)-N-P(O)-(OCH3) 2; Phen=1,10-phenanthroline, Ln=Sm, Eu, Gd, Tb] was synthesised. The X-ray diffraction analysis of the Sm(III) complex shows that it is in the monoclinic system and P2(1)/c space group. There are two different Sm3+ ions with insignificant differences between the Sm -O, -N distances (0.005 Angstrom) and a CN=8. Absorption, emission and emission excitation spectra at 293, 77 and 4.2 K were used to characterise the title compounds in the solid state and in solution. The luminescence spectra at 77 K for the Eu analogue are complex and two components in the D-5(0)-->F-7(0) transition show that Eu3+ ions reside in two symmetry sites. The spectroscopic results correspond well to the crystal structure of the SmPhbeta3.Phen compound and confirm that the Sm3+, Eu3+ and Tb3+ monocrystals are isostructural. Efficient energy transfer sensitises the interion emission from D-5(4) or D-5(0) levels of Tb(III) and Eu(III) after ligand band excitation. Based on the splitting of the levels observed at 4.2 K in the single crystal spectra of Tb and Eu, as well as the absorption, phosphorescence and excitation spectra, energy level diagrams are proposed. The mechanism of energy transfer and excited state dynamics are discussed. Strong vibronic coupling was observed mainly in the F-7(0)-->D-5(2) electronic transition. The IR spectra were used to analyse the vibronic components. Analysis of the emission spectra of a Eu3+-doped silica sol-gel sample was made and compared to those for the title monocrystals. The total spectral characteristics of the materials permits an evaluation of their potential applicability. [References: 36]
机译:具有β-二酮和菲咯啉衍生物的新型镧系元素络合物LnPhbeta3.Phen [其中Phbeta = CCl3-C(O)-N-P(O)-(OCH3)2;合成了苯基= 1,10-菲咯啉,Ln = Sm,Eu,Gd,Tb]。 Sm(III)配合物的X射线衍射分析表明,它位于单斜晶系和P2(1)/ c空间群中。存在两种不同的Sm3 +离子,Sm -O,-N距离(0.005埃)和CN = 8之间的差异不明显。 293、77和4.2 K处的吸收,发射和发射激发光谱用于表征固态和溶液中的标题化合物。 Eu类似物在77 K处的发光光谱很复杂,D-5(0)-> F-7(0)跃迁中的两个分量表明Eu3 +离子位于两个对称位点。光谱结果与SmPhbeta3.Phen化合物的晶体结构非常吻合,并证实Sm3 +,Eu3 +和Tb3 +单晶是同构的。高效的能量转移使配体带激发后Tb(III)和Eu(III)的D-5(4)或D-5(0)离子的离子发射变敏。基于Tb和Eu单晶光谱中4.2 K处观察到的能级分裂,以及吸收,磷光和激发光谱,提出了能级图。讨论了能量转移和激发态动力学的机理。主要在F-7(0)-> D-5(2)电子跃迁中观察到强振动耦合。红外光谱用于分析振动波分量。进行了Eu3 +掺杂的二氧化硅溶胶-凝胶样品的发射光谱分析,并与标题单晶的发射光谱进行了比较。材料的总光谱特性允许对其潜在适用性进行评估。 [参考:36]

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