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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Spectroscopic determination of site symmetry and space group in lanthanide-doped crystals: Resolving intricate symmetry aspects for beta-NaLnF(4)
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Spectroscopic determination of site symmetry and space group in lanthanide-doped crystals: Resolving intricate symmetry aspects for beta-NaLnF(4)

机译:镧系元素掺杂晶体中位点对称性和空间群的光谱测定:解决β-NaLnF的复杂对称性问题(4)

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摘要

There exists a controversy in the hitherto reported studies concerning the actual space group that accounts for spectroscopic results observed for the trivalent lanthanide (Ln(3+)) ions doped into beta-NaLnF(4) hosts. The two competing assignments of the space group: P (6) over bar or P6(3)/m, bear on the associated point symmetry groups, which describe the local site symmetry of the dopant Ln ions. This paper aims at resolving this controversy. For this purpose two approaches are utilized. First, several new samples were synthesized and characterized by photoluminescence (PL) spectroscopy. Both the emission and excitation PL spectra have been measured. The analysis of the present experimental data indicates unequivocally that the dopant Ln(3+) ions enter the crystal lattice beta-NaGF(4) and beta-NaYF4 at two crystallographically distinct sites. Hence, the correct space group for these hosts is P (6) over bar and not P6(3)/m. The intricacies arising from the sample preparation methods, which bear on the interpretation of the results, are also clarified. Second, the theoretical modeling of the crystal-field parameters (CFPs) is carried out based on superposition model to correlate the available crystallographic and spectroscopic data. The crystal-field analysis enables to ascribe unambiguously the spectroscopically determined sites to the crystallographic sites la and if. In this way an interpretation of photoluminescence spectra is achieved that fully corroborates the available crystallographic data. The influence of structural disorder occurring in beta-NaLnF(4) family of compounds on the D-5(0) -> F-7(1) photoluminescence spectra of dopant Eu3+ ion and its role in interpretation of experimental data is also discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:迄今为止,有关实际空间组的研究存在争议,这说明了掺杂到β-NaLnF(4)主体中的三价镧系元素(Ln(3+))离子的光谱结果。空间组的两个竞争分配:bar之上的P(6)或P6(3)/ m,取决于相关的点对称组,这些点对称组描述了掺杂Ln离子的局部位点对称性。本文旨在解决这一争议。为此目的,使用了两种方法。首先,合成了几个新样品,并通过光致发光(PL)光谱进行了表征。发射和激发PL光谱均已测量。本实验数据的分析明确表明,掺杂剂Ln(3+)离子在两个晶体学上不同的位置进入晶格β-NaGF(4)和β-NaYF4。因此,这些主机的正确空间组是P(6)over bar,而不是P6(3)/ m。还阐明了样品制备方法的复杂性,这些复杂性取决于结果的解释。其次,基于叠加模型对晶体场参数(CFP)进行理论建模,以关联可用的晶体学和光谱数据。晶体场分析使得能够将光谱确定的位点明确地归属于晶体学位点1a和1f。通过这种方式,可以完全确认可用的晶体学数据,从而获得对光致发光光谱的解释。还讨论了化合物β-NaLnF(4)家族中发生的结构紊乱对掺杂Eu3 +离子的D-5(0)-> F-7(1)光致发光光谱的影响及其在解释实验数据中的作用。 (C)2015 Elsevier Ltd.保留所有权利。

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