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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Influence of OH?N and NH?O inter- and intramolecular hydrogen bonds in the conformational equilibrium of some 1,3-disubstituted cyclohexanes through NMR spectroscopy and theoretical calculations
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Influence of OH?N and NH?O inter- and intramolecular hydrogen bonds in the conformational equilibrium of some 1,3-disubstituted cyclohexanes through NMR spectroscopy and theoretical calculations

机译:NMR光谱和理论计算对OH,N和NH,O分子间和分子内氢键对某些1,3-二取代环己烷构象平衡的影响

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The analysis of concentration effects in the ~1H NMR data of cis-3-aminocyclohexanol (ACOL) showed that its diequatorial conformer changes from 60% at 0.01 mol L~(-1) to 70% at 0.40 mol L~(-1) in acetone-d_6. A similar increase was also observed for the diequatorial conformer of cis-3-N-methylaminocyclohexanol (MCOL), from 32% (CDCl_3 0.01 mol L~(-1)) to 55% (CDCl_3 0.40 mol L~(-1)). The increase in solvent basicity leads to a large stabilization effect for the diequatorial conformer of both compounds too. For ACOL, it changes from 47% (ΔGeqeq-axax = 0.06 kcal mol-1) in CCl4 to 93% (ΔGeqeq-axax = -1.53 kcal mol-1) in DMSO, while for MCOL it goes from 7% (ΔG_(eqeq-axax) = 1.54 kcal mol~(-1)) in CCl_4 to 82% (ΔG~(eqeq-axax) = -0.88 kcal mol~(-1)) in pyridine-d_6. These results indicate that the intramolecular hydrogen bonds (IAHB) OH?N and NH?O stabilize the diaxial conformers of these compounds in a non-polar solvent. For cis-3-amino-1-methoxycyclohexane (ACNE) and cis-3-N-methylamino-1-methoxy- cyclohexane (MCNE) no changes were observed in equilibrium with the variation of solvent polarity. These results indicate for the first time that the IAHB NH?O is not strong enough to stabilize the diaxial conformer of these compounds and that the conformation equilibria of the cis isomers of compounds ACOL and MCOL are influenced only by the IAHB OH?N. Moreover, the presence of a secondary amino group (93% of diaxial conformer in CCl _4) leads to an IAHB OH?N stronger than in primary and tertiary amino-derivatives (53 and 54% of diaxial conformer, respectively) for 1,3-disubstituted cyclohexanes. Values obtained from the theoretical data through the B3LYP functional are in agreement with the experimental results and indicate that the IAHB strength that influences the conformational equilibrium of these compounds is the IAHB OH?N. Thus, the IAHB NH?O do not stabilize the diaxial conformer of the cis isomer of compounds ACNE and MCNE showing that the diequatorial conformer will always be more stable than the diaxial conformer, independent of concentration or solvent.
机译:分析顺式-3-氨基环己醇(ACOL)的〜1H NMR数据中的浓度效应表明,其二氯构象构象从0.01 mol L〜(-1)时的60%变为0.40 mol L〜(-1)时的70%在丙酮-d_6中。顺式-3-N-甲基氨基环己醇(MCOL)的二甲基构象构象也从32%(CDCl_3 0.01 mol L〜(-1))增加到55%(CDCl_3 0.40 mol L〜(-1)) 。溶剂碱性的增加也导致两种化合物的二季铵型构象异构体具有很大的稳定作用。对于ACOL,它从CCl4中的47%(ΔGeqeq-axax= 0.06 kcal mol-1)变为DMSO中的93%(ΔGeqeq-axax= -1.53​​ kcal mol-1),而对于MCOL,它从7%(ΔG_( CCl_4中的eqeq-axax)= 1.54 kcal mol〜(-1))至吡啶-d_6中的82%(ΔG〜(eqeq-axax)= -0.88 kcal mol〜(-1))。这些结果表明,在非极性溶剂中,分子内氢键(IAHB)OH 2 N和NH 2 O稳定了这些化合物的双轴构象。对于顺-3-氨基-1-甲氧基环己烷(ACNE)和顺-3-N-甲基氨基-1-甲氧基环己烷(MCNE),在平衡中未观察到溶剂极性变化的变化。这些结果首次表明,IAHB NH 2 O的强度不足以稳定这些化合物的双轴构象,并且化合物ACOL和MCOL的顺式异构体的构象平衡仅受IAHB OH?N影响。此外,存在仲氨基(CCl _4中93%的双轴构象异构体)导致IAHB OH?N比伯和叔氨基衍生物(分别为53%和54%的双轴构象异构体)更强。 -二取代的环己烷。通过B3LYP官能团从理论数据获得的值与实验结果相符,表明影响这些化合物构象平衡的IAHB强度是IAHB OH?N。因此,IAHB NH 2 O不能稳定化合物ACNE和MCNE的顺式异构体的双轴构象异构体,表明二聚体构象异构体总是比双轴构象异构体更稳定,而与浓度或溶剂无关。

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