Calabrese Camilla, Maris Assimo, Evangelisti Luca, Piras Anna, Parravicini Valentina, Melandri Sonia
Dipartimento di Chimica "G. Ciamician" dell'Università, Bologna, Italy.
Front Chem. 2018 Feb 22;6:25. doi: 10.3389/fchem.2018.00025. eCollection 2018.
We describe an experimental and quantum chemical study for the accurate determination of the conformational space of small molecular systems governed by intramolecular non-covalent interactions. The model systems investigated belong to the biological relevant aminoalcohol's family, and include 2-amino-1-phenylethanol, 2-methylamino-1-phenylethanol, noradrenaline, adrenaline 2-aminoethanol, and -methyl-2-aminoethanol. For the latter molecule, the rotational spectrum in the 6-18 and 59.6-74.4 GHz ranges was recorded in the isolated conditions of a free jet expansion. Based on the analysis of the rotational spectra, two different conformational species and 11 isotopologues were observed and their spectroscopic constants, including N-nuclear hyperfine coupling constants and methyl internal rotation barriers, were determined. From the experimental data a structural determination was performed, which was also used to benchmark accurate quantum chemical calculations on the whole conformational space. Atom in molecules and non-covalent interactions theories allowed the characterization of the position of the intramolecular non-covalent interactions and the energies involved, highlighting the subtle balance responsible of the stabilization of all the molecular systems.
我们描述了一项实验和量子化学研究,用于精确确定由分子内非共价相互作用控制的小分子系统的构象空间。所研究的模型系统属于与生物相关的氨基醇家族,包括2-氨基-1-苯乙醇、2-甲基氨基-1-苯乙醇、去甲肾上腺素、肾上腺素、2-氨基乙醇和2-甲基-2-氨基乙醇。对于后一种分子,在自由射流膨胀的孤立条件下记录了6-18 GHz和59.6-74.4 GHz范围内的转动光谱。基于对转动光谱的分析,观察到两种不同的构象异构体和11种同位素异构体,并确定了它们的光谱常数,包括N-核超精细耦合常数和甲基内旋转势垒。根据实验数据进行了结构测定,该测定也用于对整个构象空间的精确量子化学计算进行基准测试。分子中的原子和非共价相互作用理论能够表征分子内非共价相互作用的位置和所涉及的能量,突出了所有分子系统稳定化所依赖的微妙平衡。