RT Journal Article T1 UV-photoelectron spectroscopy and MS-CASPT2/CASSCF study of the thermolysis of azidoethyl-methyl sul de: Characterization and mechanism of the formation of S-methyl-N-sulfenylethanimine A1 Algarra, Manuel A1 Labat, Stephane A1 Rodríguez-Borges, José Enrique A1 Pino-González, María Soledad A1 Sotiropoulos, Jean Marc A1 Soto-Martín, Juan K1 Espectroscopía fotoelectrónica AB The thermal decomposition of azidoethyl methyl sul de was studied by real-time UV-photoelectron spectroscopy (UV-PES) at temperatures ranging from 773 to 1023 K. Different ionization energies were obtained using density functional theory calculations to assign UV-PES spectra. The complete active space self-consistent eld and multistate second-order perturbation methods were used to predict the formation of different species present in the thermal decomposition process. N2 and S-methyl-N-sulfenylethanimine are generated at 773 K. The rst step of the reaction is the dissociation of the molecule into nitrene and nitrogen. The spin state (singlet or triplet) of nitrene formed in the rst step of the reaction is temperature-dependent. At low temperatures (T ≤ 650 K), both states are formed with almost the same probability; in contrast, at high temperatures (T ≥ 1000 K), singlet nitrene is the majority intermediate. From this singlet nitrene, three stable reaction products were detected in the experiments: an imine derivative, a four-member cyclic derivative, and a sulfenyl derivative. PB American Institute of Physics YR 2025 FD 2025-05-16 LK https://hdl.handle.net/10630/46328 UL https://hdl.handle.net/10630/46328 LA eng NO J. Chem. Phys. 162, 194303 (2025) NO Universidad de Málaga DS RIUMA. Repositorio Institucional de la Universidad de Málaga RD 1 may 2026