Rademacher Paul, Kowski Klaus, Hoffmann H Martin R, Haustedt Lars O, Holzgrefe Jens
Institut für Organische Chemie Universität Essen Universitätsstr. 5-7, 45117 Essen, Germany.
Chemphyschem. 2002 Nov 15;3(11):957-62. doi: 10.1002/1439-7641(20021115)3:11<957::AID-CPHC957>3.0.CO;2-E.
The molecular and electronic structure of three pairs of diastereomeric quinuclidine derivatives (1-6) have been investigated by quantum chemical calculations and UV photoelectron (PE) spectroscopy. Compounds 1-6 each possess a hydroxymethyl group at C2 and an ethyl (1, 2), vinyl (3, 4) or ethynyl group (5, 6) at C5. The diastereomeric pairs differ only in the configuration of carbon C2 to which the hydroxymethyl group is attached. The 1-azabicyclo[2.2.2]octane cages of 1-6 are slightly twisted. The torsion angles show opposite signs in the pseudoenantiomeric pairs and vary only little with the degree of unsaturation in the C5 substituent. In all compounds the hydroxymethyl group forms an intramolecular hydrogen bond with the nitrogen atom of the bicycle in the gas phase (in contrast to the crystalline and liquid state). The PE spectra of the diastereomers are nearly identical. Compared to unsubstituted quinuclidine, the orbital of the nitrogen lone pair electrons n(N) is stabilized by 0.3-0.4 eV, which is a result of partially compensating contributions of the OH...N hydrogen bond and substituent effects. Among these a substantial through-bond interaction of the n(N) with a pi(CC) orbital is detected for 3-6. The marked differences of the properties of 1-6 in the gas phase versus solid state and solution are emphasised. In solution the ethynyl azabicyclics 5 and 6 are more polar than the vinyl analogues 3 and 4.
通过量子化学计算和紫外光电子(PE)光谱研究了三对对映异构奎宁环衍生物(1 - 6)的分子和电子结构。化合物1 - 6在C2位均具有羟甲基,在C5位分别具有乙基(1, 2)、乙烯基(3, 4)或乙炔基(5, 6)。对映异构体对仅在连接羟甲基的C2碳的构型上有所不同。1 - 6的1 - 氮杂双环[2.2.2]辛烷笼略有扭曲。扭转角在假对映体对中显示相反的符号,并且仅随C5取代基的不饱和程度略有变化。在所有化合物中,羟甲基在气相中与双环的氮原子形成分子内氢键(与晶体和液态相反)。非对映异构体的PE光谱几乎相同。与未取代的奎宁环相比,氮孤对电子n(N)的轨道稳定了0.3 - 0.4 eV,这是OH...N氢键和取代基效应部分补偿作用的结果。其中,对于3 - 6检测到n(N)与π(CC)轨道之间存在显著的通过键相互作用。强调了1 - 6在气相与固态和溶液中性质的明显差异。在溶液中,乙炔基氮杂双环化合物5和6比乙烯基类似物3和4更具极性。