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通过可变能量紫外光电子能谱、X射线光电子能谱和近边X射线吸收精细结构光谱对加尔文oxyl自由基的电子结构进行表征。

Characterisation of the electronic structure of galvinoxyl free radical by variable energy UPS, XPS and NEXAFS spectroscopy.

作者信息

Ljubić Ivan, Kivimäki Antti, Coreno Marcello, Kazazić Saša, Novak Igor

机构信息

Department of Physical Chemistry, Ruđer Bošković Institute, Bijenička cesta 54, HR-10000 Zagreb, Croatia.

出版信息

Phys Chem Chem Phys. 2018 Jan 24;20(4):2480-2491. doi: 10.1039/c7cp07266j.

Abstract

Insights into the electronic structure of galvinoxyl - a prototype persistent free radical species - are of interest to elucidate its attractive photophysical and magnetic properties and to pave way for a sensible design of novel applications. To this end, we study the photoionization and photoexcitation UPS, XPS and NEXAFS spectra of the gas-phase galvinoxyl in the valence and core (C 1s and O 1s) regions using synchrotron X-ray radiation. We observe significant variations of relative band intensities with photon energy for valence ionizations below 10 eV which are rationalized in terms of the properties of the corresponding valence molecular orbitals. We calculate the core electron binding energies and core-excited states by employing the spin-unrestricted ΔDFT (B3LYP, M06-2X, and ωB97xD) and time-dependent DFT (SRC2-BLYP) methods. A good correlation between the calculations and the measured C 1s and O 1s XPS and NEXAFS spectra is obtained if one assumes that the galvinoxyl sample has undergone a partial degradation (around 50%) to the saturated (closed-shell) phenolic-quinonic derivative known as galvinol. We carry out a comparative theoretical analysis of the XPS and NEXAFS spectra of galvinoxyl and galvinol by assigning the relevant absorptions and pointing out the most important relative differences. The calculations identify a band in the O 1s NEXAFS spectrum whose diminishing intensity is a most manifest indicator of the extent of the degradation. Such a feature may thus prove useful in monitoring the scavenging dynamics of galvinoxyl using the core-excitation spectroscopy.

摘要

深入了解加尔文氧基(一种典型的持久性自由基物种)的电子结构,对于阐明其引人注目的光物理和磁性特性以及为新型应用的合理设计铺平道路具有重要意义。为此,我们使用同步加速器X射线辐射研究了气相加尔文氧基在价层和内层(C 1s和O 1s)区域的光电离和光激发UPS、XPS和NEXAFS光谱。我们观察到低于10 eV的价层电离的相对带强度随光子能量有显著变化,这可以根据相应价层分子轨道的性质得到合理解释。我们采用自旋非限制ΔDFT(B3LYP、M06 - 2X和ωB97xD)和含时DFT(SRC2 - BLYP)方法计算了内层电子结合能和内层激发态。如果假设加尔文氧基样品已部分降解(约50%)为称为加尔维诺尔的饱和(闭壳层)酚醌衍生物,则计算结果与测量的C 1s和O 1s XPS及NEXAFS光谱之间具有良好的相关性。我们通过指定相关吸收并指出最重要的相对差异,对加尔文氧基和加尔维诺尔的XPS和NEXAFS光谱进行了比较理论分析。计算结果在O 1s NEXAFS光谱中识别出一个带,其强度的减弱是降解程度的最明显指标。因此,这样一个特征可能有助于利用内层激发光谱监测加尔文氧基的清除动力学。

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