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实验和理论对比的 O K 边缘非共振非弹性 X 射线散射和 X 射线吸收光谱的 NaReO4。

Experimental and theoretical comparison of the O K-edge nonresonant inelastic X-ray scattering and X-ray absorption spectra of NaReO4.

机构信息

Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.

出版信息

J Am Chem Soc. 2010 Oct 6;132(39):13914-21. doi: 10.1021/ja1040978.

Abstract

Accurate X-ray absorption spectra (XAS) of first row atoms, e.g., O, are notoriously difficult to obtain due to the extreme sensitivity of the measurement to surface contamination, self-absorption, and saturation affects. Herein, we describe a comprehensive approach for determining reliable O K-edge XAS data for ReO(4)(1-) and provide methodology for obtaining trustworthy and quantitative data on nonconducting molecular systems, even in the presence of surface contamination. This involves comparing spectra measured by nonresonant inelastic X-ray scattering (NRIXS), a bulk-sensitive technique that is not prone to X-ray self-absorption and provides exact peak intensities, with XAS spectra obtained by three different detection modes, namely total electron yield (TEY), fluorescence yield (FY), and scanning transmission X-ray microscopy (STXM). For ReO(4)(1-), TEY measurements were heavily influenced by surface contamination, while the FY and STXM data agree well with the bulk NRIXS analysis. These spectra all showed two intense pre-edge features indicative of the covalent interaction between the Re 5d and O 2p orbitals. Density functional theory calculations were used to assign these two peaks as O 1s excitations to the e and t(2) molecular orbitals that result from Re 5d and O 2p covalent mixing in T(d) symmetry. Electronic structure calculations were used to determine the amount of O 2p character (%) in these molecular orbitals. Time dependent-density functional theory (TD-DFT) was also used to calculate the energies and intensities of the pre-edge transitions. Overall, under these experimental conditions, this analysis suggests that NRIXS, STXM, and FY operate cooperatively, providing a sound basis for validation of bulk-like excitation spectra and, in combination with electronic structure calculations, suggest that NaReO(4) may serve as a well-defined O K-edge energy and intensity standard for future O K-edge XAS studies.

摘要

由于测量对表面污染、自吸收和饱和影响的极端敏感性,第一行原子(例如 O)的精确 X 射线吸收光谱(XAS)非常难以获得。在此,我们描述了一种全面的方法,用于确定 ReO(4)(1-)的可靠 O K 边 XAS 数据,并提供了一种获取非导电分子系统可靠和定量数据的方法,即使存在表面污染也是如此。这涉及比较通过非共振非弹性 X 射线散射(NRIXS)测量的光谱,NRIXS 是一种不易受 X 射线自吸收影响且提供精确峰强度的体敏感技术,并与通过三种不同检测模式获得的 XAS 光谱进行比较,即总电子产额(TEY)、荧光产额(FY)和扫描透射 X 射线显微镜(STXM)。对于 ReO(4)(1-),TEY 测量受到表面污染的严重影响,而 FY 和 STXM 数据与体 NRIXS 分析吻合良好。这些光谱都显示了两个强烈的预边特征,表明 Re 5d 和 O 2p 轨道之间的共价相互作用。密度泛函理论计算用于将这两个峰分配为 O 1s 激发到 e 和 t(2)分子轨道,这些分子轨道是由于 Re 5d 和 O 2p 共价混合在 T(d)对称中产生的。电子结构计算用于确定这些分子轨道中 O 2p 特征的比例(%)。还使用含时密度泛函理论(TD-DFT)计算预边跃迁的能量和强度。总体而言,在这些实验条件下,该分析表明 NRIXS、STXM 和 FY 协同工作,为验证体相似激发光谱提供了可靠基础,并且与电子结构计算相结合,表明 NaReO(4)可能作为未来 O K 边 XAS 研究的明确 O K 边能量和强度标准。

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