Institute of Organic Chemistry, Justus Liebig University, Heinrich-Buff-Ring 17, 35390, Giessen, Germany.
Institute of Inorganic and Analytical Chemistry, Justus Liebig University, Heinrich-Buff-Ring 17, 35390, Giessen, Germany.
Chemistry. 2021 Apr 16;27(22):6732-6739. doi: 10.1002/chem.202005188. Epub 2021 Mar 12.
As sulfur-containing organic molecules thioamides and their isomers are conceivable intermediates in prebiotic chemistry, for example, in the formation of amino acids and thiazoles and resemble viable candidates for detection in interstellar media. Here, we report the characterization of parent thioformamide in the solid state via single-crystal X-ray diffraction and its photochemical interconversion to its hitherto unreported higher energy tautomer thiolimine in inert argon and dinitrogen matrices. Upon photogeneration, four conformers of thiolimine form, whose ratio depends on the employed wavelength. One of these conformers interconverts due to quantum mechanical tunneling with a half-life of 30-45 min in both matrix materials at 3 and 20 K. A spontaneous reverse reaction from thiolimine to thioformamide is not observed. To support our experimental findings, we explored the potential energy surface of the system at the AE-CCSD(T)/aug-cc-pCVTZ level of theory and computed tunneling half-lives with the CVT/SCT approach applying DFT methods.
由于含硫有机分子硫代酰胺及其异构体是前生物化学中可以想象的中间体,例如在氨基酸和噻唑的形成中,它们类似于星际介质中可检测的可行候选物。在这里,我们通过单晶 X 射线衍射报告了固态母体硫代甲酰胺的特征,并在惰性氩气和氮气基质中研究了其光化学互变异构为其迄今未报道的更高能量互变异构体硫醇亚胺。光生成后,形成了硫醇亚胺的四个构象异构体,其比例取决于所使用的波长。这些构象异构体之一由于量子力学隧道效应而相互转化,在 3 和 20 K 下,在两种基质材料中的半衰期为 30-45 分钟。没有观察到从硫醇亚胺到硫代甲酰胺的自发反向反应。为了支持我们的实验结果,我们在 AE-CCSD(T)/aug-cc-pCVTZ 理论水平上探索了该体系的势能面,并使用 CVT/SCT 方法应用 DFT 方法计算了隧道半衰期。