Karpfen Alfred, Kryachko Eugene S
Institute for Theoretical Chemistry, University of Vienna, Währinger Strasse 17, A-1090 Vienna, Austria.
J Phys Chem A. 2007 Aug 23;111(33):8177-87. doi: 10.1021/jp072717f. Epub 2007 Jul 28.
The structures and vibrational spectra of the intermolecular complexes formed by insertion of substituted formaldehyde molecules HRCO (R = H, Li, F, Cl) into cyclic hydrogen fluoride and water clusters are studied at the MP2/aug-cc-pVTZ computational level. Depending on the nature of the substituent R, the cluster type, and its size, the C-H stretching modes of HRCO undergo large blue and partly red shifts, whereas all the F-H and O-H stretching modes of the conventional hydrogen bonds are strongly red-shifted. It is shown that (i) the mechanism of blue shifting can be explained within the concept of the negative intramolecular coupling between C-H and C=O bonds that is inherent to the HRCO monomers, (ii) the blue shifts also occur even if no hydrogen bond is formed, and (iii) variation of the acceptor X or the strength of the C-H...X hydrogen bond may either amplify the blue shift or cause a transition from blue shift to red shift. These findings are illustrated by means of intra- and intermolecular scans of the potential energy surfaces. The performance of the negative intramolecular coupling between C-H and C=O bonds of H(2)CO is interpreted in terms of the NBO analysis of the isolated H(2)CO molecule and H(2)CO interacting with (H2O)n and (HF)n clusters.
在MP2/aug-cc-pVTZ计算水平上,研究了取代甲醛分子HRCO(R = H、Li、F、Cl)插入环状氟化氢和水团簇形成的分子间复合物的结构和振动光谱。根据取代基R的性质、团簇类型及其大小,HRCO的C-H伸缩振动模式会发生大幅蓝移,部分还会出现红移,而传统氢键的所有F-H和O-H伸缩振动模式则会强烈红移。结果表明:(i)蓝移机制可以在HRCO单体固有的C-H和C=O键之间的负分子内耦合概念内得到解释;(ii)即使没有形成氢键,蓝移也会发生;(iii)受体X的变化或C-H…X氢键强度的变化可能会放大蓝移或导致从蓝移到红移的转变。通过势能面的分子内和分子间扫描来说明这些发现。根据对孤立的H₂CO分子以及与(H₂O)ₙ和(HF)ₙ团簇相互作用的H₂CO的自然键轨道分析,解释了H₂CO中C-H和C=O键之间负分子内耦合的表现。