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CO与HNF2、H2NF和HNO之间氢键的理论研究。

Theoretical investigation of hydrogen bonds between CO and HNF2, H2NF, and HNO.

作者信息

Li An Yong

机构信息

School of Chemistry and Chemical Engineering, Southwestern University, 400715, ChongQing, P R China.

出版信息

J Phys Chem A. 2006 Sep 21;110(37):10805-16. doi: 10.1021/jp062291p.

Abstract

Ab initio quantum mechanics methods were applied to investigate the hydrogen bonds between CO and HNF2, H2NF, and HNO. We use the Hartree-Fock, MP2, and MP4(SDQ) theories with three basis sets 6-311++G(d,p), 6-311++G(2df,2p), and AUG-cc-pVDZ, and both the standard gradient and counterpoise-corrected gradient techniques to optimize the geometries in order to explore the effects of the theories, basis sets, and different optimization methods on this type of H bond. Eight complexes are obtained, including the two types of C...H-N and O...H-N hydrogen bonds: OC...HNF2(C(s)), OC...H2NF(C(s) and C1), and OC...HNO(C(s)), and CO...HNF2(C(s)), CO...H2NF(C(s) and C1), and CO...HNO(C(s)). The vibrational analysis shows that they have no imaginary frequencies and are minima in potential energy surfaces. The N-H bonds exhibit a small decrease with a concomitant blue shift of the N-H stretch frequency on complexation, except for OC...HNF2 and OC...H2NF(C1), which are red-shifting at high levels of theory and with large basis sets. The O...H-N hydrogen bonds are very weak, with 0 K dissociation energies of only 0.2-2.5 kJ/mol, but the C...H-N hydrogen bonds are stronger with dissociation energies of 2.7-7.0 kJ/mol at the MP2/AUG-cc-pVDZ level. It is notable that the IR intensity of the N-H stretch vibration decreases on complexation for the proton donor HNO but increases for HNF2 and H2NF. A calculation investigation of the dipole moment derivative leads to the conclusion that a negative permanent dipole moment derivative of the proton donor is not a necessary condition for the formation of the blue-shifting hydrogen bond. Natural bond orbital analysis shows that for the C...H-N hydrogen bonds a large electron density is transferred from CO to the donors, but for the O...H-N hydrogen bonds a small electron density transfer exists from the proton donor to the acceptor CO, which is unusual except for CO...H2NF(C(s)). From the fact that the bent hydrogen bonds in OC(CO)...H2NF(C(s)) are quite different from those in the others, we conclude that a greatly bent H-bond configuration shall inhibit both hyperconjugation and rehybridization.

摘要

采用从头算量子力学方法研究了CO与HNF2、H2NF和HNO之间的氢键。我们使用了Hartree-Fock、MP2和MP4(SDQ)理论,以及三种基组6-311++G(d,p)、6-311++G(2df,2p)和AUG-cc-pVDZ,并采用标准梯度和经Counterpoise校正的梯度技术来优化几何结构,以探究理论、基组和不同优化方法对这类氢键的影响。得到了八个配合物,包括两种类型的C...H-N和O...H-N氢键:OC...HNF2(C(s))、OC...H2NF(C(s)和C1)、OC...HNO(C(s)),以及CO...HNF2(C(s))、CO...H2NF(C(s)和C1)、CO...HNO(C(s))。振动分析表明它们没有虚频,是势能面上的极小值。除了OC...HNF2和OC...H2NF(C1)在高理论水平和大基组下发生红移外,N-H键在形成配合物时会略有缩短,同时N-H伸缩频率发生蓝移。O...H-N氢键非常弱,0 K时的解离能仅为0.2 - 至2.5 kJ/mol,但在MP2/AUG-cc-pVDZ水平下,C...H-N氢键更强,解离能为2.7 - 7.0 kJ/mol。值得注意的是,对于质子供体HNO,N-H伸缩振动的红外强度在形成配合物时降低,而对于HNF2和H2NF则增加。偶极矩导数的计算研究得出结论,质子供体的负永久偶极矩导数不是形成蓝移氢键的必要条件。自然键轨道分析表明,对于C...H-N氢键,有大量电子密度从CO转移到供体,但对于O...H-N氢键,只有少量电子密度从质子供体转移到受体CO,除了CO...H2NF(C(s))外,这种情况并不常见。从OC(CO)...H2NF(C(s))中的弯曲氢键与其他氢键有很大不同这一事实,我们得出结论,高度弯曲的氢键构型会抑制超共轭和再杂化。

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