School of Pharmacy, Faculty of Health Sciences, University of Eastern Finland, PO Box 1627, 70211, Kuopio, Finland.
Magn Reson Chem. 2012 Sep;50(9):598-607. doi: 10.1002/mrc.3847. Epub 2012 Jul 25.
Alkyl chains are common structural units, for example in lipids, and their (1) H NMR spectral parameters offer valuable information about their conformational behavior in solvent environment. Even the spectra of short n-alkanes are complex, which is obviously a reason why their accurate spectral analyses have not been reported before. The present study reports the quantum mechanical analysis of (1) H NMR spectra of n-butane, n-pentane, n-hexane, and n-heptane. The spectral parameters were used to characterize the conformational behavior of n-alkanes. The temperature dependence analysis of coupling constants suggests that the enthalpy difference between the gauche (g) and trans (t) conformations (ΔH(g) ) of n-butane in chloroform is 2.55-2.85 kJ mol(-1) . The difference between the trans-gauche (tg) and all-trans (tt) conformers of n-pentane (ΔH(tg) ) seems to be 0.1-0.2 kJ mol(-1) higher. The coupling constant information shows that the t(n) conformations become more favored with longer chains, although not only for energetic reasons but also partly because the g(+) g(-) arrangements become sterically unfavorable, which decreases the number of favorable g(n) -type conformations. The analysis of the (1) H NMR spectra of n-pentane and n-hexane in solvents representing different chemical environments indicates that polar and spherical dimethyl sulfoxide favors clearly the g conformations, whereas n-hexane-d(14) favors slightly the extended t(n) conformation. In addition to the intrinsic scientific importance for NMR spectral parameter prediction and molecular modeling in solution, the results provide some insights to behavior of hydrocarbon chains and their spectra in different chemical environments.
烷基链是常见的结构单元,例如在脂质中,它们的(1)H NMR 光谱参数提供了有关其在溶剂环境中构象行为的有价值的信息。即使是短链正构烷烃的光谱也很复杂,这显然是以前没有报道其准确光谱分析的原因之一。本研究报告了正丁烷、正戊烷、正己烷和正庚烷的(1)H NMR 光谱的量子力学分析。光谱参数用于表征正构烷烃的构象行为。耦合常数的温度依赖性分析表明,在氯仿中,正丁烷的 gauche(g)和 trans(t)构象之间的焓差(ΔH(g))为 2.55-2.85 kJ mol(-1)。正戊烷的 trans-gauche(tg)和 all-trans(tt)构象之间的差异(ΔH(tg))似乎高出 0.1-0.2 kJ mol(-1)。耦合常数信息表明,随着链长的增加,t(n)构象变得更加有利,尽管不仅是由于能量原因,而且部分原因是 g(+)g(-)排列变得空间不利,这减少了有利的 g(n)型构象的数量。在代表不同化学环境的溶剂中,正戊烷和正己烷的(1)H NMR 光谱分析表明,极性和球形二甲基亚砜明显有利于 g 构象,而正己烷-d(14)略微有利于伸展的 t(n)构象。除了在溶液中 NMR 光谱参数预测和分子建模方面的固有科学重要性外,这些结果还为不同化学环境中烃链及其光谱的行为提供了一些见解。