首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Synthesis, structure and optical properties of two novel luminescent polar dysprosium metal-organic frameworks: [(CH3)(2)NH2][Dy(HCOO)(4)] and [N2H5][Dy(HCOO)(4)]
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Synthesis, structure and optical properties of two novel luminescent polar dysprosium metal-organic frameworks: [(CH3)(2)NH2][Dy(HCOO)(4)] and [N2H5][Dy(HCOO)(4)]

机译:两种新型发光极性polar金属-有机骨架的合成,结构和光学性质:[(CH3)(2)NH2] [Dy(HCOO)(4)]和[N2H5] [Dy(HCOO)(4)]

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We report the synthesis, crystal structures, Raman, infrared, electron absorption and emission spectra of two novel luminescent MOFs, [(CH3)(2)NH2][Dy(HCOO)(4)] and [N2H5][Dy(HCOO)(4)]. These data show that [(CH3) 2NH2][Dy(HCOO)(4)] and [N2H5][Dy(HCOO)(4)] crystallize in polar space groups of Pna2(1) and Pca2(1) symmetry, respectively. The polar properties of [N2H5][Dy(HCOO)(4)] come from the arrangement of template cations that possess an internal dipole moment as well as from the symmetry of the framework. In [(CH3)(2)NH2][Dy(HCOO)(4)], the Dy(III)-formate framework is centrosymmetric and the polar properties of this compound arise from the arrangement of the DMA(+) cations. Vibrational studies reveal that the position of the nu(NN) band, which is very sensitive to coordination changes, is characteristic for hydrazine molecules forming onium ions. Optical studies show that both compounds exhibit emission of Dy(III) ions, in spite of full concentration of dysprosium ions in the studied compounds. Our data also show that radiative decay times, 57 mu s for [(CH3)(2)NH2][Dy(HCOO)(4)] and 96 ms for [N2H5][Dy(HCOO)(4)], are very long compared to lifetimes observed in inorganic compounds. We have also preformed Judd-Ofelt analysis of the optical absorption spectrum of the hydrazinium analogue that provides information on various optical parameters such as electric-dipole oscillator strengths, Judd-Ofelt parameters Omega(lambda), branching ratios and spontaneous emission probabilities.
机译:我们报告了两种新型发光MOFs [(CH3)(2)NH2] [Dy(HCOO)(4)]和[N2H5] [Dy(HCOO)的合成,晶体结构,拉曼,红外,电子吸收和发射光谱(4)]。这些数据表明[(CH3)2NH2] [Dy(HCOO)(4)]和[N2H5] [Dy(HCOO)(4)]分别在对称的Pna2(1)和Pca2(1)的极性空间群中结晶。 。 [N2H5] [Dy(HCOO)(4)]的极性性质来自具有内部偶极矩的模板阳离子的排列以及骨架的对称性。在[(CH3)(2)NH2] [Dy(HCOO)(4)]中,Dy(III)-甲酸酯骨架是中心对称的,该化合物的极性性质由DMA(+)阳离子的排列引起。振动研究表明,对配位变化非常敏感的nu(NN)带位置是形成鎓离子的肼分子的特征。光学研究表明,尽管化合物中的full离子浓度很高,但两种化合物均显示出Dy(III)离子的发射。我们的数据还显示,辐射衰减时间非常短,[(CH3)(2)NH2] [Dy(HCOO)(4)]为57毫秒,[N2H5] [Dy(HCOO)(4)]为96毫秒。与在无机化合物中观察到的寿命相比,使用寿命更长。我们还对肼类似物的光吸收光谱进行了Judd-Ofelt分析,该分析提供了有关各种光学参数的信息,例如电偶极子振荡器强度,Judd-Ofelt参数Omega(λ),分支比和自发发射概率。

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