Literature DB >> 30848645

Dipole-Supported Electronic Resonances Mediate Electron-Induced Amide Bond Cleavage.

Zhou Li1,2, Michal Ryszka1, M Michele Dawley1, Ian Carmichael1, Ksenia B Bravaya3, Sylwia Ptasińska1,2.   

Abstract

Dissociative electron attachment (DEA) plays a key role in radiation damage of biomolecules under high-energy radiation conditions. The initial step in DEA is often rationalized in terms of resonant electron capture into one of the metastable valence states of a molecule followed by its fragmentation. Our combined theoretical and experimental investigations indicate that the manifold of states responsible for electron capture in the DEA process can be dominated by core-excited (shake-up) dipole-supported resonances. Specifically, we present the results of experimental and computational studies of the gas-phase DEA to three prototypical peptide molecules, formamide, N-methylformamide (NMF), and N,N-dimethyl-formamide (DMF). In contrast to the case of electron capture by positively charged peptides in which amide bond rupture is rare compared to N─C_{α} bond cleavage, fragmentation of the amide bond was observed in each of these three molecules. The ion yield curves for ions resulting from this amide bond cleavage, such as NH_{2}^{-} for formamide, NHCH_{3}^{-} for NMF, and N(CH_{3})_{2}^{-} for DMF, showed a double-peak structure in the region between 5 and 8 eV. The peaks are assigned to Feshbach resonances including core-excited dipole-supported resonances populated upon electron attachment based on high-level electronic structure calculations. Moreover, the lower energy peak is attributed to formation of the core-excited resonance that correlates with the triplet state of the neutral molecule. The latter process highlights the role of optically spin-forbidden transitions promoted by electron impact in the DEA process.

Entities:  

Year:  2019        PMID: 30848645     DOI: 10.1103/PhysRevLett.122.073002

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  2 in total

1.  Electron ionization of clusters containing the formamide molecule.

Authors:  Harvey-Andres Suarez-Moreno; Lauren Eckermann; Fabio Zappa; Eugene Arthur-Baidoo; Sylwia Ptasińska; Stephan Denifl
Journal:  Eur Phys J D At Mol Opt Phys       Date:  2021-10-20       Impact factor: 1.425

2.  Formation of Temporary Negative Ions and Their Subsequent Fragmentation upon Electron Attachment to CoQ0 and CoQ0 H2.

Authors:  João Ameixa; Eugene Arthur-Baidoo; João Pereira-da-Silva; Júlio C Ruivo; Márcio T do N Varella; Martin K Beyer; Milan Ončák; Filipe Ferreira da Silva; Stephan Denifl
Journal:  Chemphyschem       Date:  2022-02-10       Impact factor: 3.520

  2 in total

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