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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Incisive Probing of Intermolecular Interactions in Molecular Crystals: Core Level Spectroscopy Combined with Density Functional Theory
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Incisive Probing of Intermolecular Interactions in Molecular Crystals: Core Level Spectroscopy Combined with Density Functional Theory

机译:分子晶体中分子间相互作用的敏锐探测:核心能级谱结合密度泛函理论

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摘要

The α-form of crystalline para-aminobenzoic acid (PABA) has been examined as a model system for demonstrating how the core level spectroscopies X-ray photoelectron spectroscopy (XPS) and near-edge X-ray absorption fine-structure (NEXAPS) can be combined with CASTEP density functional theory (DFT) to provide reliable modeling of intermolecular bonding in organic molecular crystals. Through its dependence on unoccupied valence states NEXAFS is an extremely sensitive probe of variations in intermolecular bonding. Prediction of NEXAFS spectra by CASTEP, in combination with core level shifts predicted by W1EN2K, reproduced experimentally observed data very well when all significant intermolecular interactions were correctly taken into account. CASTEP-predicted NEXAFS spectra for the crystalline state were compared with those for an isolated PABA monomer to examine the impact of intermolecular interactions and local environment in the solid state. The effects of the loss of hydrogen-bonding in carboxylic acid dimers and intermolecular hydrogen bonding between amino and carboxylic acid moieties are evident, with energy shifts and intensity variations of NEXAFS features arising from the associated differences in electronic structure and bonding.
机译:已经检验了α-形式的结晶对氨基苯甲酸(PABA)作为模型系统,以展示核心能级谱X射线光电子能谱(XPS)和近边缘X射线吸收精细结构(NEXAPS)可以与CASTEP密度泛函理论(DFT)结合使用,可提供有机分子晶体中分子间键合的可靠模型。 NEXAFS通过依赖于未使用的价态,是分子间键合变化的极其灵敏的探针。当正确考虑所有重要的分子间相互作用时,通过CASTEP预测NEXAFS光谱,结合W1EN2K预测的核心能级位移,可以很好地再现实验观察到的数据。将CASTEP预测的结晶态NEXAFS光谱与分离的PABA单体的光谱进行比较,以检查分子间相互作用和固态环境的影响。羧酸二聚物中氢键的丧失以及氨基和羧酸基团之间的分子间氢键的影响是显而易见的,NEXAFS特征的能量转移和强度变化是由电子结构和键的相关差异引起的。

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