Department of Chemistry and Institute for Molecular Science and Fusion Technology, Kangwon National University, Chuncheon 24341, South Korea.
Department of Chemistry, Sogang University, Seoul 04107, South Korea.
J Chem Phys. 2021 Feb 7;154(5):054308. doi: 10.1063/5.0038166.
The conformational structures of heterocyclic compounds are of considerable interest to chemists and biochemists as they are often the constituents of natural products. Among saturated four-membered heterocycles, the conformational structure of oxetane is known to be slightly puckered in equilibrium because of a low interconversion barrier in its ring-puckering potential, unlike cyclobutane and thietane. We measured the one-photon vacuum ultraviolet mass-analyzed threshold ionization (VUV-MATI) and two-photon IR+VUV-MATI spectra of oxetane for the first time to determine the ring-puckering potential of the oxetane cation and hence its conformational structure in the D (ground) state. Remarkably, negative anharmonicity and large amplitudes were observed for the ring-puckering vibrational mode progression in the low-frequency region of the observed MATI spectra. We were able to successfully analyze the progression in the MATI spectra through the Franck-Condon simulations, using modeled potential energy functions for the ring-puckering modes in the S and D states. Considering that the interconversion barrier and puckered angle for the ring-puckering potential on the S state were found to be 15.5 cm and 14°, respectively, the cationic structure is expected to be planar with C symmetry. Our results revealed that the removal of an electron from the nonbonding orbitals on the oxygen atom in oxetane induced the straightening of the puckered ring in the cation owing to an increase in ring strain. Consequently, we conclude that this change in the conformational structure upon ionization generated the ring-puckering vibrational mode progression in the MATI spectra.
杂环化合物的构象结构引起了化学家们和生物化学家们的浓厚兴趣,因为它们通常是天然产物的组成部分。在饱和的四元杂环中,由于其环扭转势能中的低互变势垒,噁烷的构象结构在平衡时被认为略有扭曲,而不同于环丁烷和噻烷。我们首次测量了噁烷的单光子真空紫外质谱分析阈值电离 (VUV-MATI) 和双光子 IR+VUV-MATI 谱,以确定噁烷阳离子的环扭转势能,从而确定其在 D(基)态下的构象结构。值得注意的是,在观察到的 MATI 光谱的低频区域中,环扭转振动模式的进展观察到了负非谐性和大振幅。通过 Franck-Condon 模拟,我们成功地分析了 MATI 光谱中的进展,使用 S 和 D 态中环扭转模式的建模势能函数。考虑到 S 态中环扭转势垒和扭转角分别为 15.5 cm 和 14°,阳离子结构预计为平面 C 对称。我们的结果表明,从噁烷中氧原子的非键轨道上除去一个电子,由于环应变的增加,导致扭曲的环在阳离子中变直。因此,我们得出结论,这种在电离时构象结构的变化在 MATI 光谱中产生了环扭转振动模式的进展。