Sep 2026· Journal of Organic Chemistry· Vol 91, pp. 12800-12810· 0 citations· 57 references
Abstract
We report the photochemistry of 2-formyl thiazole 2FT in inert gas matrices at 4 K, complemented by computations. The present study aims to unravel the dominant photochemical channel among ring-opening of thiazole and light-induced conformational changes (LICC) associated with the formyl group. 2FT underwent LICC from (s)-trans to (s)-cis under 365 nm UV light irradiation. However, at 254 nm, 2FT led to LICC and photoproducts via ring-opening and fragmentation channels under short- and prolonged irradiation conditions, respectively. To gain mechanistic insights, we computed ground- and excited-state potential energy surfaces at the CAM-B3LYP/6–311++G(d,p) level of theory. Apparently, an adiabatic low-barrier (13.9 kcal/mol) rotational pathway in S1 triggers the LICC; conversely, the C–S cleavage pathway (17.7 kcal/mol barrier in S1) becomes accessible under prolonged irradiation conditions. The primary photofragmentation pathway of 2FT involves the formation of CO and the photoproducts ethynethiol, HCN, and other ring-opened species. Additionally, alpha cleavage and C–S ring scission channels led to several intriguing sulfur- and nitrogen-rich photoproducts. Overall, the investigations delineate the wavelength dependence from the computed absorption profiles of the two conformers. Furthermore, the importance of the excited-state barrier in the competition between irreversible high-energy conformational trapping and photofragmentation in 2FT has been unraveled.
The photophysical and photochemical behaviour of 2-methyl-5-((1-phenyl-1H-tetrazol-5-yl)thio)-1,3,4-thiadiazole (MeTDZ-PhTTZ) was investigated through a combined computational and experimental approach. This heterocyclic compound, containing both tetrazole and 1,3,4-thiadiazole moieties of recognized medicinal relevanc...
Rodrigo C. Santos, Silvia Gramacho, Bruno E. C. Guerreiro et al.· Physical Chemistry, Chemical...· 0 citations
Photoinduced [6π]-electrocyclization of triphenylamine provides an efficient route to the construction of carbazole frameworks. In this work, 4-(diphenylamino)phenol (TPA-OH) was selected as a model compound to examine how hydroxyl substitution breaks the symmetry of triphenylamine and differentiates its photocyclizati...
Yong-Gang Yang, Xu-Chao Cui, Yang Liu et al.· Journal of Chemical Physics· 0 citations
Norbornadiene (NBD) photoswitches are promising for molecular solar energy and information storage, as they isomerize to quadricyclane (QC) after absorbing irradiation energy. Here, we report pyrene-linked tolylsulfonyl-substituted NBD hybrids that enable wavelength-selective back-isomerization from QC to NBD. Using fe...
Da-Zhong Sun, Daniel Krappmann, Christoph Oleszak et al.· Journal of the American Chem...· 0 citations
Quantum mechanical tunneling (QMT) can profoundly alter reaction kinetics and ultimately determine the chemical outcome. Therefore, understanding QMT reactivity and extending its relevance to typical laboratory conditions are important goals. In this study, computational screening identified a 3-trifluoromethyl substit...
Sofia Braz, Cláudio M. Nunes, Simon Schlosser et al.· Chemistry· 0 citations
Diazene oxide (HNNO) is a chemically strategic transient that links N2O to more reactive nitrogen reservoirs and can control branching in H + N2O networks under pressure- and radiation-dependent conditions. The electronic structure, spectroscopy, and photodissociation mechanisms of the cis and trans isomers of the HNNO...
O. Yazidi, Hela Ferjani, T. Trabelsi· Spectrochimica Acta Part A -...· 0 citations