Sun Wenhao, Lozada Issiah Byen, van Wijngaarden Jennifer
Department of Chemistry, University of Manitoba , Winnipeg, Manitoba R3T 2N2, Canada.
J Phys Chem A. 2018 Mar 1;122(8):2060-2068. doi: 10.1021/acs.jpca.7b11673. Epub 2018 Feb 16.
The rotational spectra of 2-fluorobenzaldehyde (2-FBD) and 3-fluorobenzaldehyde (3-FBD) were recorded using Fourier transform microwave (FTMW) spectroscopy from 4 to 26 GHz. Two planar rotamers were observed for each species that correspond to structures in which the carbonyl bond is directed toward (O-cis) or away from (O-trans) the C1-C2 bond. Observation of transitions due to heavy atom isotopes (C, O) in natural abundance allowed derivation of the ground state effective (r) structures and mass dependence (r) structures for the lowest energy rotamer of 2-FBD (O-trans) and both rotamers of 3-FBD, which compare favorably with ab initio estimates of the equilibrium (r) geometries at the MP2/aug-cc-pVTZ level. The resultant parameters are consistent with the introduction of bond length alternation in the benzene ring, which is dependent on the orientation of the aldehyde group. Careful study of the experimental structure and results of natural bond orbital (NBO) analysis do not support the presence of intramolecular hydrogen bonding as the source of its stabilization of O-trans 2-FBD over its cis counterpart. Furthermore, calculations of the interconversion pathways between rotamers suggest that despite being 9.39 kJ/mol higher in energy, the O-cis 2-FBD moiety is metastable in the molecular beam, which has allowed the observation of its microwave spectrum for the first time.
使用傅里叶变换微波(FTMW)光谱在4至26 GHz范围内记录了2-氟苯甲醛(2-FBD)和3-氟苯甲醛(3-FBD)的转动光谱。观察到每个物种有两种平面旋转异构体,它们分别对应于羰基键指向(O-顺式)或远离(O-反式)C1-C2键的结构。通过观察天然丰度下重原子同位素(C、O)引起的跃迁,推导了2-FBD最低能量旋转异构体(O-反式)和3-FBD的两种旋转异构体的基态有效(r)结构和质量依赖(r)结构,这些结构与MP2/aug-cc-pVTZ水平下平衡(r)几何结构的从头算估计值相当吻合。所得参数与苯环中键长交替的引入一致,这取决于醛基的取向。对实验结构的仔细研究和自然键轨道(NBO)分析结果不支持分子内氢键的存在是O-反式2-FBD比其顺式对应物更稳定的原因。此外,旋转异构体之间相互转换途径的计算表明,尽管O-顺式2-FBD部分的能量高9.39 kJ/mol,但它在分子束中是亚稳态的,这使得首次观察到其微波光谱成为可能。