Celebre Giorgio, Concistrè Maria, De Luca Giuseppina, Longeri Marcello, Pileio Giuseppe, Emsley James William
Università della Calabria, Dipartimento di Chimica, Arcavacata di Rende (Cs), Italy.
Chemistry. 2005 Jun 6;11(12):3599-608. doi: 10.1002/chem.200401059.
The (1)H NMR spectrum of a sample of acrolein dissolved in the nematic liquid crystal phase I52 has been analysed to yield 18 dipolar couplings between all the magnetic nuclei in the molecule; moreover, the (13)C and (13)C{(1)H} NMR spectra of a sample of acrolein in CDCl(3) were recorded and analysed to determine the indirect J(ij) couplings. The data were used to obtain the relative positions of the carbon and hydrogen atoms, assuming that these are independent of the conformations generated by rotation around the C--C bond through an angle phi, and to obtain a probability distribution P(phi). It has been found that in the liquid phase, the distribution is a maximum at the trans form whereas the abundance of the cis form is significantly smaller compared with that found by microwave spectroscopy or high level quantum mechanical calculations. Such calculations produced also a suitable force field needed to develop suitable strategies for vibrational correction procedure in the case of flexible molecules.
对溶解在向列相液晶I52中的丙烯醛样品进行了(1)H NMR光谱分析,以得出分子中所有磁核之间的18个偶极耦合;此外,记录并分析了CDCl(3)中丙烯醛样品的(13)C和(13)C{(1)H} NMR光谱,以确定间接J(ij)耦合。假设碳原子和氢原子的相对位置与通过角度φ围绕C--C键旋转产生的构象无关,利用这些数据获得了它们的相对位置,并得到了概率分布P(φ)。结果发现,在液相中,反式构象的分布最大,而顺式构象的丰度与微波光谱或高水平量子力学计算结果相比显著较小。此类计算还产生了一个合适的力场,该力场是为柔性分子开发合适的振动校正程序策略所必需的。