Ultrafast molecular dynamics in ionized 1- And 2-propanol- And simple fragmentation to complex isomerization and roaming mechanisms

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Abstract

Upon photoexcitation, molecules can undergo numerous complex processes, such as isomerization and roaming, leading to changes in the molecular and electronic structure. Here, we report on the time-resolved ultrafast nuclear dynamics, initiated by laser ionization, in the two structural isomers, 1- and 2-propanol, using a combination of pump-probe spectroscopy and coincident Coulomb explosion imaging. Our measurements, paired with quantum chemistry calculations, identify the mechanisms for the observed two- and three-body dissociation channels for both isomers. In particular, the fragmentation channel of 2-propanol associated with the loss of CH3shows possible evidence of methyl roaming. Moreover, the electronic structure of this roaming methyl fragment could be responsible for the enhanced ionization also observed for this channel. Finally, comparison with similar studies done on ethanol and acetonitrile helps establish a correlation between the length of the alkyl chain and the likelihood of hydrogen migration.

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Mishra, D., Reino-González, J., Obaid, R., LaForge, A. C., Díaz-Tendero, S., Martín, F., & Berrah, N. (2022). Ultrafast molecular dynamics in ionized 1- And 2-propanol- And simple fragmentation to complex isomerization and roaming mechanisms. Physical Chemistry Chemical Physics, 24(1), 433–443. https://doi.org/10.1039/d1cp04011a

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