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H/D isotope effect on porphine and porphycene molecules with multicomponent hybrid density functional theory

机译:多组分杂化密度泛函理论的H / D同位素对卟啉和卟啉分子的影响

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摘要

To analyze the H/D isotope effect on porphine and porphycene molecules including the protonic/deuteronic quantum nature and electron correlation efficiently, the authors have developed the new scheme of the multicomponent hybrid density functional theory [MC_(HF+DFT)]. The optimized geometries of porphine, porphycene, and these deuterated isotopomers by our MC_(HF+DFT) method are in good agreement with the experimental "high-symmetric" structures, contrary to the "low-symmetric" geometries optimized by pure multicomponent Hartree-Fock method. The optimized geometries for HD-porphine and HD-porphycene molecules, in which an inner hydrogen is replaced to a deuterium, are found to be low symmetric. Such drastic geometrical change induces the electronic polarization, and gives rise to the slight dipole moment values in these HD species. Their results clearly indicate that the difference of the nuclear quantum nature between inner proton and inner deuteron directly influences the molecular geometry and electronic structure. (c) 2006 American Institute of Physics.
机译:为了有效地分析氢/同位素对卟啉和卟啉分子的质子/氘代量子性质和电子相关性的影响,作者开发了多组分混合密度泛函理论[MC_(HF + DFT)]的新方案。通过我们的MC_(HF + DFT)方法优化的卟啉,卟啉和这些氘代异构体的几何形状与实验的“高对称”结构非常吻合,这与通过纯多组分Hartree- Fock方法。发现其中内部氢被氘取代的HD-卟啉和HD-卟啉分子的最佳几何形状是低对称的。这种剧烈的几何变化会引起电子极化,并在这些HD物种中引起轻微的偶极矩值。他们的结果清楚地表明,内质子和内氘核之间的核量子性质的差异直接影响分子的几何形状和电子结构。 (c)2006年美国物理研究所。

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