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Conformations, Chemical Reactivities and Spectroscopic Characteristics of Some Di-substituted Ketenes: An ab initio Study

机译:某些二取代酮的构象,化学反应性和光谱特性:从头算研究

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A systematic study of the structure, energetics and spectral characteristics of substituted aminoketenes R(NH2)C=C=O (R = H, CH3, NH2, OH, OCH3, CH=CH2, C≌CH, CN, CHO, NO, NO2) which are highly reactive and transient intermediates in synthesis has been conducted by ab initio calculations at the MP2/6-31G*//MP2/6-31G* level. Twenty four stable isomers of the eleven substituted aminoketenes having dihedral angles ヵNH2~120o and 60o have been identified and their optimized geometries and energies obtained. Electrostatic and steric effects on the molecular geometries have been analyzed. While the ヰ-acceptor groups lead to planar conformations, the electron-donor groups give rise to non-planar conformations. Isodesmic substituent stabilization energies relative to alkenes have been calculated and correlation with group electronegativities established. Role of induction effect by the substituent groups and resonance effects in charge distribution in the molecules has been analyzed. An analysis of the asymmetric stretching frequencies and intensities of the C=C=O group shows that affect of non-ヰ acceptor substituents on the frequency is determined by the field effect (F) and resonance effect (R) parameters, the calculated intensities I (km/mol.) are correlated to group electronegativities ヶ of the substituents by the relationship I = 640.2?100.1 ヶ (r = 0.92). The ヰ-acceptor substituents increase the intensity which may be explained in terms of their delocalizing effect on the negative charge at the C atom.
机译:系统研究取代氨基酮R(NH 2 )C = C = O(R = H,CH 3 ,NH 2 ,OH,OCH 3 ,CH = CH 2 ,C≌CH,CN,CHO,NO,NO 2 )通过合成从头算在MP2 / 6-31G * // MP2 / 6-31G *水平上进行了合成中的高反应性和过渡性中间体。鉴定了具有11个二面角sub NH2 〜120 o 和60 o 的11个取代的氨基酮的二十四个稳定异构体,并优化了它们的几何构型和能量获得。分析了静电和位阻对分子几何结构的影响。当α-受体基团产生平面构象时,电子给体基团产生非平面构象。已计算出相对于烯烃的等价取代基稳定能,并建立了与基团电负性的相关性。已经分析了取代基的诱导效应和共振效应在分子中电荷分布中的作用。对C = C = O基团的不对称拉伸频率和强度的分析表明,非ヰ受体取代基对频率的影响取决于场效应(F)和共振效应(R)参数,计算得出的强度I (km / mol。)与取代基的基团电负性ヶ的关系为I =640.2≤100.110(r = 0.92)。 γ-受体取代基增加了强度,这可以用它们对C mo 原子上的负电荷的离域作用来解释。

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