在HERFD-XANES频谱的区域规范化
Luca Bugarin1, Hugo Alexander Suarez Orduz1, Pieter Glatzel1
1ESRF - The European Synchrotron, 71 Avenue des Martyers, 38000 Grenoble, France.
Journal of synchrotron radiation
|August 6, 2024
概括
频谱规范化方法,包括边缘跳跃和频谱区域规范化,对于X射线吸收近边缘结构 (XANES) 分析至关重要. 当数据采集有限时,对光谱区域的规范化是一个可行的替代方案,只要使用足够的能量范围.
科学领域:
- 材料科学 材料科学 材料科学
- 分析化学 分析化学
- 频谱学是一种光谱学.
背景情况:
- 射线吸收近边结构 (XANES) 频谱需要使用线性组合分析等技术进行定量分析的规范化.
- 常见的规范化方法包括边缘跳跃规范化和光谱区域规范化.
- 对有限的光谱范围来说,光谱区域正常化是有利的.
研究的目的:
- 为了比较XANES光谱的边缘跳跃与光谱区域正常化的有效性.
- 在有限的光谱数据条件下,评估光谱区域规范化的可行性.
主要方法:
- 实验和计算的XANES光谱的比较.
- 对 (Pt), (Pd) 和 (Rh) 的L3边谱的分析.
- 对 (Ni) 的K边谱的分析.
主要成果:
- 对光谱区域的规范化是XANES光谱的有效方法.
- 频谱区域正常化的成功取决于利用足够大的能量范围.
- 两种规范化方法都在不同的元素和吸收边缘上进行了评估.
结论:
- 光谱区域规范化为XANES分析提供了边缘跳跃规范化的实用替代方案.
- 精心选择能量范围对于成功实施光谱区域规范化至关重要.
- 本研究验证了在特定场景中用于定量XANES分析的光谱区域规范化.
相关概念视频
IR Frequency Region: X–H Stretching
935
In IR spectroscopy, signals produced by the X−H bonds (such as C−H, O−H, or N−H) can be observed in the frequency range of 2700–4000 cm–1. The C−H stretching vibration forms sharp bands in the region 2850–3000 cm–1. The presence of the O−H stretching vibration leads to the forming of an absorption band in the frequency range 3650–3200 cm−1. At the same time, N−H stretching can be confirmed by absorption bands in...
935
2D NMR: Heteronuclear Single-Quantum Correlation Spectroscopy (HSQC)
674
Heteronuclear single-quantum correlation spectroscopy (HSQC) is a 2D NMR technique that reveals one-bond correlations between hydrogen and a heteronucleus. The HSQC experiment is similar to the heteronuclear correlation experiment (HETCOR) but is more sensitive. In the HSQC spectrum, the proton chemical shift is plotted on the horizontal F2 axis, while the 13C chemical shift is plotted on the vertical F1 axis. The corresponding proton and 13C spectra are also shown. The HSQC contour plot does...
674
¹H NMR of Conformationally Flexible Molecules: Variable-Temperature NMR
1.1K
The axial and equatorial protons in cyclohexane can be distinguished by performing a variable-temperature NMR experiment. In this process, except for one proton, the remaining eleven protons are replaced by deuterium. The deuterium substitution avoids the possible peak splitting caused by the spin-spin coupling between the adjacent protons. The remaining proton flips between the axial and equatorial positions.
1.1K
2D NMR: Overview of Heteronuclear Correlation Techniques
165
Heteronuclear correlation spectroscopy is an analytical technique that investigates the coupling between different types of nuclei, often a proton and an X-nucleus, such as carbon-13 or nitrogen-15. This method is commonly used in nuclear magnetic resonance (NMR) spectroscopy to gain insights into complex chemical compounds' structural and compositional aspects. A typical heteronuclear correlation spectrum displays X-nucleus chemical shifts on one axis and a proton spectrum on the other...
165
IR Frequency Region: Fingerprint Region
819
IR spectra are divided into two main regions: the diagnostic region and the fingerprint region. The diagnostic region of the spectrum lies above 1500 cm−1. The absorptions resulting from single-bond vibrations of the N–H, C–H, and O–H stretch at higher wavenumbers and appear on the left side of the spectrum. The stretching absorptions of the C≡C and C≡N occur between 2100–2300 cm−1. In contrast, those arising from stretching absorptions of the...
819
High-Resolution Mass Spectrometry (HRMS)
1.3K
The resolution of a mass spectrometer depends on the efficiency of separating ions with different ion masses. The mass of an atom is approximated to the sum of the masses of protons and neutrons inside, considering the masses of protons and neutrons as equal. However, the masses of the proton (1.6726 × 10−24 g) and neutron (1.6749 × 10−24 g) are not truly equal. There is a minor error in the expression of atomic masses relative to the simplest atom of hydrogen. For...
1.3K


