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Multicoverage Study of Femtosecond Laser-Induced Desorption of CO from Pd(111).


ABSTRACT: We study the strong coverage dependence of the femtosecond laser-induced desorption of CO from Pd(111) using molecular dynamics simulations that consistently include the effect of the laser-induced hot electrons on both the adsorbates and surface atoms. Adiabatic forces are obtained from a multicoverage neural network potential energy surface that we construct using data from density functional theory calculations for 0.33 and 0.75 monolayer (ML). Our molecular dynamics simulations performed for these two trained coverages and an additional intermediate coverage of 0.60 ML reproduce well the peculiarities of the experimental findings. The performed simulations also permit us to disentangle the relative role played by the excited electrons and phonons on the desorption process and discover interesting properties of the reaction dynamics as the relevance that the precursor physisorption well acquires during the dynamics as coverage increases.

SUBMITTER: S Muzas A 

PROVIDER: S-EPMC10926157 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Multicoverage Study of Femtosecond Laser-Induced Desorption of CO from Pd(111).

S Muzas Alberto A   Serrano Jiménez Alfredo A   Zhang Yaolong Y   Jiang Bin B   Juaristi J Iñaki JI   Alducin Maite M  

The journal of physical chemistry letters 20240228 9


We study the strong coverage dependence of the femtosecond laser-induced desorption of CO from Pd(111) using molecular dynamics simulations that consistently include the effect of the laser-induced hot electrons on both the adsorbates and surface atoms. Adiabatic forces are obtained from a multicoverage neural network potential energy surface that we construct using data from density functional theory calculations for 0.33 and 0.75 monolayer (ML). Our molecular dynamics simulations performed for  ...[more]

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