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π 电子对 N-H···O=C 氢键的贡献:喷射冷却吡咯-丙酮二元团簇的红外光谱研究。

Contribution of the π electron to the N-H···O=C hydrogen bond: IR spectroscopic studies of the jet-cooled pyrrole-acetone binary clusters.

机构信息

Graduate School of Material Science, University of Hyogo, 3-2-1 Kohto, Kamigori, Hyogo 678-1297, Japan.

出版信息

Phys Chem Chem Phys. 2012 Oct 5;14(37):12938-47. doi: 10.1039/c2cp41564j. Epub 2012 Aug 17.

DOI:10.1039/c2cp41564j
PMID:22899308
Abstract

To investigate the π bonding electron contribution to N-H···O=C hydrogen-bond (H-bond) formation, we applied IR cavity ringdown spectroscopy to jet-cooled pyrrole-acetone (Py-Ac) binary clusters. The observed NH stretching vibrations were analyzed by density functional theory (DFT), in which the energetically optimized structures, harmonic frequencies, and interaction energies were calculated for various sizes of binary clusters. We observed three NH stretching vibrations, ascribed to binary clusters at 3406, 3388, and 3335 cm(-1). These were assigned to H-bonded NH stretches of the Py(2)-Ac(1), Py(1)-Ac(1), and Py(1)-Ac(2) clusters, respectively. The Py(1)-Ac(1) cluster has a single N-H···O=C H-bonded structure with C(s) symmetry, while the Py(1)-Ac(2) cluster has a cyclic structure formed by a single N-H···O=C H-bond, dipole-dipole interactions, and weak CH H-bonds. A natural bond orbital (NBO) analysis was performed to reveal the H-bond strength in Py-Ac binary clusters. For the Py(1)-Ac(2) cluster, we found that the donor-acceptor interactions are not only the n →σ* type (O atom lone pair to the NH anti-bonding orbitals), but also the π→σ* type (the CO π bonding to the NH anti-bonding orbitals). By analyzing the relationship between the frequency shift and the stabilization energy in donor-acceptor interactions, we concluded that larger red-shift of the NH stretching vibration in the Py(1)-Ac(2) can be explained by not only the lone pair and the π electron contributions to the N-H···O=C H-bond, but also the dipole-interaction between Py and non-H-bonded Ac. We also discussed the structures of Py(2)-Ac(1) clusters.

摘要

为了研究π键电子对 N-H···O=C 氢键(H 键)形成的贡献,我们应用红外腔衰荡光谱技术研究了喷射冷却的吡咯-丙酮(Py-Ac)二元团簇。通过密度泛函理论(DFT)分析了观察到的 NH 伸缩振动,其中计算了各种尺寸二元团簇的能量优化结构、简正频率和相互作用能。我们观察到三个 NH 伸缩振动,分别归因于 3406、3388 和 3335cm-1 的二元团簇。它们分别被分配给 Py(2)-Ac(1)、Py(1)-Ac(1)和 Py(1)-Ac(2) 团簇的 H 键 NH 伸缩。Py(1)-Ac(1) 团簇具有单个 N-H···O=C H 键合结构,具有 C(s)对称性,而 Py(1)-Ac(2) 团簇具有由单个 N-H···O=C H 键、偶极-偶极相互作用和弱 CH H 键形成的环状结构。进行自然键轨道(NBO)分析以揭示 Py-Ac 二元团簇中的 H 键强度。对于 Py(1)-Ac(2) 团簇,我们发现供体-受体相互作用不仅是 n→σ类型(O 原子孤对电子到 NH 反键轨道),而且是 π→σ类型(CO π 键到 NH 反键轨道)。通过分析频率位移与供体-受体相互作用中稳定能之间的关系,我们得出结论,较大的 NH 伸缩振动在 Py(1)-Ac(2)中的红移可以用不仅孤对电子和π电子对 N-H···O=C H 键的贡献,而且 Py 和非 H 键合 Ac 之间的偶极相互作用来解释。我们还讨论了 Py(2)-Ac(1) 团簇的结构。

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