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高能X射线吸收光谱法:用于镧系元素和第三周期过渡元素结构研究的新工具。

High-energy X-ray absorption spectroscopy: a new tool for structural investigations of lanthanoids and third-row transition elements.

作者信息

D'Angelo Paola, De Panfilis Simone, Filipponi Adriano, Persson Ingmar

机构信息

Dipartimento di Chimica, Università di Roma La Sapienza, P. le A. Moro 5, 00185 Roma, Italy.

出版信息

Chemistry. 2008;14(10):3045-55. doi: 10.1002/chem.200701282.

Abstract

This is the first systematic study exploring the potential of high-energy EXAFS as a structural tool for lanthanoids and third-row transition elements. The K-edge X-ray absorption spectra of the hydrated lanthanoid(III) ions both in aqueous solution and in solid trifluoromethanesulfonate salts have been studied. The K-edges of lanthanoids cover the energy range from 38 (La) to 65 keV (Lu), while the corresponding energy range for the L(3)-edges is 5.5 (La) to 9.2 keV (Lu). We show that the large widths of the core-hole states do not appreciably reduce the potential structural information in the high-energy K-edge EXAFS data. Moreover, for lanthanoid compounds, more accurate structural parameters are obtained from analysis of K-edge than from L(3)-edge EXAFS data. The main reasons are the much wider k range available and the absence of double-electron transitions, especially for the lighter lanthanoids. A comparative K- and L(3)-edge EXAFS data analysis of nonahydrated crystalline neodymium(III) trifluoromethanesulfonate demonstrates the clear advantages of K-edge analysis over conventionally performed studies at the L(3)-absorption edge for structural investigations of lanthanoid and third-row transition metal compounds. The coordination chemistry of the hydrated lanthanoid(III) ions in aqueous solution and solid trifluoromethanesulfonate salts, based on the results of both the K- and L(3)-edge EXAFS data, is thoroughly discussed in the next paper in this series (I. Persson, P. D'Angelo, S. De Panfilis, M. Sandström, L. Eriksson, Chem. Eur. J. 2008, 14, DOI: 10.1002/chem.200701281).

摘要

这是第一项系统性研究,旨在探索高能扩展X射线吸收精细结构(EXAFS)作为镧系元素和第三周期过渡元素结构分析工具的潜力。研究了水合镧系(III)离子在水溶液和固体三氟甲磺酸盐中的K边X射线吸收光谱。镧系元素的K边能量范围从38 keV(镧)到65 keV(镥),而L(3)边的相应能量范围是5.5 keV(镧)到9.2 keV(镥)。我们表明,芯孔态的大宽度并不会显著降低高能K边EXAFS数据中的潜在结构信息。此外,对于镧系化合物,从K边分析获得的结构参数比从L(3)边EXAFS数据获得的更准确。主要原因是可用的k范围更宽,并且不存在双电子跃迁,特别是对于较轻的镧系元素。对九水合结晶钕(III)三氟甲磺酸盐的K边和L(3)边EXAFS数据分析表明,在镧系和第三周期过渡金属化合物的结构研究中,K边分析相对于传统的L(3)吸收边研究具有明显优势。基于K边和L(3)边EXAFS数据的结果,本系列的下一篇论文(I. Persson, P. D'Angelo, S. De Panfilis, M. Sandström, L. Eriksson, Chem. Eur. J. 2008, 14, DOI: 10.1002/chem.200701281)将深入讨论水溶液和固体三氟甲磺酸盐中水合镧系(III)离子的配位化学。

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