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利用旋转光谱和量子力学计算研究 N-烯丙基甲胺的丰富构象景观。

Targeting the Rich Conformational Landscape of N-Allylmethylamine Using Rotational Spectroscopy and Quantum Mechanical Calculations.

机构信息

Department of Chemistry, University of Manitoba, Winnipeg, Manitoba, R3T 2N2, Canada.

出版信息

Chemphyschem. 2020 Nov 17;21(22):2515-2522. doi: 10.1002/cphc.202000757. Epub 2020 Nov 2.

Abstract

The highly variable conformational landscape of N-allylmethylamine (AMA) was investigated using Fourier transform microwave spectroscopy aided by high-level theoretical calculations to understand the energy relationship governing the interconversion between nine stable conformers. Spectroscopically, transitions belonging to four low energy conformers were identified and their hyperfine patterns owing to the N quadrupolar nucleus were unambiguously resolved. The rotational spectrum of the global minimum geometry, conformer I, shows an additional splitting associated with a tunneling motion through an energy barrier interconnecting its enantiomeric forms. A two-step tunneling trajectory is proposed by finding transition state structures corresponding to the allyl torsion and NH inversion. Natural bond orbital and non-covalent interaction analyses reveal that an interplay between steric and hyperconjugative effects rules the conformational preferences of AMA.

摘要

采用傅里叶变换微波光谱学和高精度理论计算研究了 N-烯丙基甲胺(AMA)的高度可变构象景观,以了解控制九种稳定构象体之间转换的能量关系。在光谱学方面,确定了属于四个低能构象体的跃迁,并且明确解析了由于 N 四极核引起的超精细图案。全局最小几何构象体 I 的旋转光谱显示出与通过连接其对映异构体的能量势垒的隧道运动相关的附加分裂。通过找到对应于烯丙基扭转和 NH 反转的过渡态结构,提出了两步隧道轨迹。自然键轨道和非共价相互作用分析表明,空间位阻和超共轭效应的相互作用决定了 AMA 的构象偏好。

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