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Ultrafast Photoelimination of Nitrogen from Upper Excited States of Diazoalkanes and the Fate of Carbenes Formed in the Reaction (CROSBI ID 324428)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Brusar, Vedran ; Forjan, Mateo ; Ljubić, Ivan ; Alešković, Marija ; Becker, Kristin ; Vdović, Silvije Ultrafast Photoelimination of Nitrogen from Upper Excited States of Diazoalkanes and the Fate of Carbenes Formed in the Reaction // Journal of organic chemistry, 88 (2023), 7; 4286-4300. doi: 10.1021/acs.joc.2c02875

Podaci o odgovornosti

Brusar, Vedran ; Forjan, Mateo ; Ljubić, Ivan ; Alešković, Marija ; Becker, Kristin ; Vdović, Silvije

engleski

Ultrafast Photoelimination of Nitrogen from Upper Excited States of Diazoalkanes and the Fate of Carbenes Formed in the Reaction

The photochemical reactivity of diphenyldiazomethane 1 and phenyl 1- and 2 adamantyl diazomethanes 2 and 3, respectively, was investigated by transient absorption spectroscopy (TA). Photoelimination of N2 upon UV excitation takes place in the anti-Kasha ultrafast photochemical reaction from the upper excited singlet states to deliver singlet carbenes, which were, in the case of 1 and 2, detected by fs-TA. The reactivity of the carbenes differs with respect to the substituent at the carbene center. The singlet car-1 in a nonpolar solvent delivers the triplet carbene by intersystem crossing (ISC). Singlet car-2 does not undergo ISC but reacts in the intermolecular insertion reactions into C–H bonds. Car-3 has an α-C–H bond next to the carbene center and reacts rapidly in the intramolecular C– H insertion reaction to deliver alkene, precluding its detection by fs-TA. However, the isolation of ketone photoproducts from 3 is highly indicative of triplet car-3’s intermediate formation. The TA spectra from the S1–S3 states of 1–3 were computed using time-dependent density functional theory, while the multiconfigurational perturbation theory to the second order was used for the absorption spectra of the corresponding singlet and triplet carbenes. The modeled and measured spectra are in good agreement, and the computations corroborate the assignments of the key short-lived intermediates.

absorption ; carbene compounds ; excited states ; hydrocarbons ; time-dependent density functional theory

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Podaci o izdanju

88 (7)

2023.

4286-4300

objavljeno

0022-3263

1520-6904

10.1021/acs.joc.2c02875

Povezanost rada

Fizika, Interdisciplinarne prirodne znanosti, Kemija

Poveznice
Indeksiranost