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Theoretical and Experimental Electrostatic Potential around the m-Nitrophenol Molecule

机译:间硝基苯酚分子的理论和实验静电势

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摘要

This work concerns a comparison of experimental and theoretical results of the electron charge density distribution and the electrostatic potential around the m-nitrophenol molecule (m-NPH) known for its interesting physical characteristics. The molecular experimental results have been obtained from a high-resolution X-ray diffraction study. Theoretical investigations were performed using the Density Functional Theory at B3LYP level of theory at 6-31G* in the Gaussian program. The multipolar model of Hansen and Coppens was used for the experimental electron charge density distribution around the molecule, while we used the DFT methods for the theoretical calculations. The electron charge density obtained in both methods allowed us to find out different molecular properties such us the electrostatic potential and the dipole moment, which were finally subject to a comparison leading to a good match obtained between both methods. The intramolecular charge transfer has also been confirmed by an HOMO-LUMO analysis.
机译:这项工作涉及对电子硝基苯酚分子(m-NPH)周围的电子电荷密度分布和静电势的实验和理论结果的比较,该分子以其有趣的物理特性而闻名。分子实验结果已从高分辨率X射线衍射研究获得。在高斯程序中,使用密度泛函理论在B3LYP理论水平上以6-31G *进行了理论研究。 Hansen和Coppens的多极模型用于分子周围的实验电子电荷密度分布,而我们使用DFT方法进行理论计算。两种方法获得的电子电荷密度使我们能够找到不同的分子性质,例如静电势和偶极矩,最后对它们进行了比较,从而得出两种方法之间的良好匹配。分子内电荷转移也已经通过HOMO-LUMO分析得到证实。

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