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短链寡聚噻吩的 S2p 芯能级谱学。

S2p core level spectroscopy of short chain oligothiophenes.

机构信息

Department of Chemical and Pharmaceutical Sciences, University of Trieste, 34127 Trieste, Italy.

IOM-CNR, Laboratorio TASC, Sincrotrone Trieste, I-34149 Trieste, Basovizza, Italy.

出版信息

J Chem Phys. 2017 Dec 28;147(24):244301. doi: 10.1063/1.5006875.

Abstract

The Near-Edge X-ray-Absorption Fine-Structure (NEXAFS) and X-ray Photoemission Spectroscopy (XPS) of short-chain oligothiophenes (thiophene, 2,2'-bithiophene, and 2,2':5',2″-terthiophene) in the gas phase have been measured in the sulfur L-edge region. The assignment of the spectral features is based on the relativistic two-component zeroth-order regular approximation time dependent density functional theory approach. The calculations allow us to estimate both the contribution of the spin-orbit splitting and of the molecular-field splitting to the sulfur binding energies and give results in good agreement with the experimental measurements. The deconvolution of the calculated S2p NEXAFS spectra into the two manifolds of excited states converging to the L and L edges facilitates the attribution of the spectral structures. The main S2p NEXAFS features are preserved along the series both as concerns the energy positions and the nature of the transitions. This behaviour suggests that the electronic and geometrical environment of the sulfur atom in the three oligomers is relatively unaffected by the increasing chain length. This trend is also observed in the XPS spectra. The relatively simple structure of S2p NEXAFS spectra along the series reflects the localized nature of the virtual states involved in the core excitation process.

摘要

短链寡聚噻吩(噻吩、2,2'-联噻吩和 2,2':5',2″-三噻吩)在气相中的近边缘 X 射线吸收精细结构(NEXAFS)和 X 射线光电子能谱(XPS)已在硫 L 边区域进行了测量。光谱特征的分配基于相对论双分量零阶正则近似时变密度泛函理论方法。该计算允许我们估计自旋轨道分裂和分子场分裂对硫结合能的贡献,并给出与实验测量结果非常吻合的结果。将计算的 S2p NEXAFS 光谱分解为收敛到 L 和 L 边的两个激发态简并有助于归属光谱结构。随着链长的增加,主要的 S2p NEXAFS 特征在能量位置和跃迁性质上都在整个系列中得以保留。这种行为表明,在三个低聚物中,硫原子的电子和几何环境受链长增加的影响相对较小。这种趋势也在 XPS 光谱中观察到。随着系列的发展,S2p NEXAFS 光谱的结构相对简单,反映了核心激发过程中涉及的虚拟态的局域性质。

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