Departamento de Química Física, Facultad de Ciencia y Tecnología, Universidad del País Vasco (UPV-EHU), Apartado 644, E-48080 Bilbao, Spain.
Phys Chem Chem Phys. 2010 Jun 21;12(23):6076-83. doi: 10.1039/c000528b. Epub 2010 Apr 19.
The intrinsic conformational and structural properties of the tropinone azabicycle have been investigated in a supersonic jet expansion using rotational spectroscopy. The spectrum revealed the presence of equatorial and axial conformers originated by the inversion of the N-methyl group, with the tropane motif adopting a distorted chair configuration. The determination of substitution and effective structures for the two conformers reveals the flexibility and structural changes associated with the N-methyl inversion, mostly a flattening at the nitrogen atom and a simultaneous rising of the carbonyl group in the axial form. Relative intensity measurements indicate that the conformational equilibrium is displaced towards the equatorial form, with a relative population in the jet of N(eq)/N(ax) approximately 2/1, which would correspond to a relative energy of ca. 2 kJ mol(-1) in pre-expansion conditions. Supporting ab initio calculations of the molecular properties and inversion barrier complemented the experimental work.
利用旋转光谱学在超声速喷射膨胀中研究了托品酮氮杂双环的固有构象和结构特性。该光谱揭示了 N-甲基基团反转产生的赤道和轴向构象的存在,托烷基序采用扭曲的椅子构象。两种构象的取代和有效结构的确定揭示了与 N-甲基反转相关的灵活性和结构变化,主要是在轴向形式下氮原子的扁平化和羰基的同时上升。相对强度测量表明,构象平衡偏向赤道形式,喷射中 N(eq)/N(ax)的相对丰度约为 2/1,这对应于预膨胀条件下约 2 kJ mol(-1)的相对能量。对分子性质和反转势垒的支持从头算计算补充了实验工作。