首页> 外文期刊>Journal of Molecular Structure >Acetamide, a challenge to theory and experiment? On the molecular structure, conformation, potential to internal rotation of the methyl group and force fields of free acetamide as studied by quantum chemical calculations
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Acetamide, a challenge to theory and experiment? On the molecular structure, conformation, potential to internal rotation of the methyl group and force fields of free acetamide as studied by quantum chemical calculations

机译:乙酰胺,对理论和实验构成挑战吗?量子化学计算研究了游离乙酰胺的分子结构,构象,甲基内旋潜力和力场

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The molecular geometry has been optimized without any constraints using different basis sets and levels of theory as: Hartree-Fock with basis sets 6-31+G**, 6-311++G**, cc-pVTZ and aug-cc-pVTZ, MP2 with basis sets 6-311++G** and cc-pVTZ, MP3 with basis set 6-311++G**, and density functional theory with basis sets 6-311++G** and cc-pVTZ. Small basis sets up to 6-31G predict the syn conformation of the methyl group to be the most stable conformation. Larger basis sets predict an unsymmetrical conformation with one of the Fl atoms perpendicular to the amide skeleton or an anti-like conformation. Dunnings correlation consistent polarized valence triple zeta, cc-pVTZ, basis set including MP2 predict two conformations, one perpendicular and one anti to be the most stable. The DFT calculations predict anti-like conformations. The most accurate calculations predict anti-like conformations which have not been predicted previously. The vibrational frequencies have been calculated for several basis sets and compared to the observed frequencies. The wagging frequency of the NH2 is very dependent on the basis sets and levels of theory. Most calculations predict a planar NH2 group in agreement with experiment. A scaled molecular force field has been determined by fitting the calculated frequencies to the observed ones for the perpendicular conformation using MP2/cc-pVTZ. The barrier heights for the methyl group have been calculated. The rotational constants, I-A + I-B - I-C values and dipole moments are compared with experimental values. (C) 1998 Elsevier Science B.V. [References: 28]
机译:使用不同的基础集和理论水平对分子几何结构进行了优化,没有任何限制,例如:具有基础集6-31 + G **,6-311 ++ G **,cc-pVTZ和aug-cc-的Hartree-Fock。 pVTZ,具有基集6-311 ++ G **和cc-pVTZ的MP3,具有基集6-311 ++ G **的MP3和具有基集6-311 ++ G **和cc-的密度泛函理论pVTZ。设置到6-31G的较小基础可预测甲基的syn构象是最稳定的构象。较大的基础集预测与酰胺骨架垂直的F1原子之一具有不对称构象或类似反构象。邓宁相关性一致的极化价三价ζ,cc-pVTZ,包括MP2的基集预测两种构象,一种垂直和一种抗最为稳定。 DFT计算可预测类反构象。最准确的计算可预测以前未曾预测过的类似抗体的构象。已经为几个基础集计算了振动频率,并将其与观察到的频率进行了比较。 NH2的摆动频率非常取决于理论的基础集和水平。大多数计算与实验一致地预测了平面NH 2基团。通过使用MP2 / cc-pVTZ将计算的频率拟合为垂直构象的观察频率,可以确定分子比例力场。已经计算出甲基的势垒高度。将旋转常数I-A + I-B-I-C值和偶极矩与实验值进行比较。 (C)1998 Elsevier Science B.V. [参考:28]

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