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单取代甲醛和硫代甲醛与氢亚硝基化合物相互作用时,C-H和N-H伸缩频率发生显著蓝移。

Remarkable blue shifts of C-H and N-H stretching frequencies in the interaction of monosubstituted formaldehyde and thioformaldehyde with nitrosyl hydride.

作者信息

Trung Nguyen Tien, Hue Tran Thanh, Nguyen Minh Tho

机构信息

Faculty of Chemistry, Quy Nhon University, Quy Nhon, Vietnam.

出版信息

J Phys Chem A. 2009 Apr 2;113(13):3245-53. doi: 10.1021/jp810826z.

Abstract

Weak interactions of monosubstituted formaldehydes and thioformaldehydes with nitrosyl hydride were investigated by using ab initio MO calculations at the MP2/aug-cc-pVTZ level. Thirty two equilibrium structures having different complex forms were located on the corresponding potential energy surfaces (all having C(s) symmetry). Obtained binding energies, which include both ZPE and BSSE corrections, range from 7 to 14 kJ x mol(-1) and 6 to 12 kJ x mol(-1) for complexes of substituted formaldehydes and thioformaldehydes, respectively. In each geometrical structure, the (XCHO,HNO) complex is consistently more stable than the (XCHS,HNO) complex. The H-bond strength significantly increases when one H atom is replaced by a methyl group in both formaldehyde and thioformaldehyde. When replacing H by a halogen atom, the binding energy tends to decrease. It is remarkable that all the C-H and N-H bonds are shortened upon complexation, resulting in an increase of their stretching frequencies. Furthermore, the blue shifts are consistently observed for the interacting N-H bonds in N-H...X, Z, with X = F, Cl, Br, and Z = O, S; such contraction of a covalent N-H bond is extremely rare. In addition, the N-H bond length contraction and its frequency blue shift in the N-H...S complex have been revealed for the first time.

摘要

在MP2/aug-cc-pVTZ水平上使用从头算分子轨道计算方法,研究了单取代甲醛和硫代甲醛与氢亚硝基的弱相互作用。在相应的势能面上找到了32个具有不同络合物形式的平衡结构(均具有C(s)对称性)。对于取代甲醛和硫代甲醛的络合物,考虑了零点能(ZPE)和基组重叠误差(BSSE)校正后的结合能分别在7至14 kJ·mol⁻¹和6至12 kJ·mol⁻¹范围内。在每种几何结构中,(XCHO,HNO)络合物始终比(XCHS,HNO)络合物更稳定。当甲醛和硫代甲醛中的一个氢原子被甲基取代时,氢键强度显著增加。当用卤素原子取代氢时,结合能趋于降低。值得注意的是,络合后所有的C-H和N-H键都缩短了,导致它们的伸缩频率增加。此外,在N-H...X、Z相互作用中,其中X = F、Cl、Br,Z = O、S,始终观察到相互作用的N-H键发生蓝移;共价N-H键的这种收缩极为罕见。此外,首次揭示了N-H...S络合物中N-H键长度的收缩及其频率蓝移。

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