Investigating resonant low-energy electron attachment to formamide: Dynamics of model peptide bond dissociation and other fragmentation channels

We report experimental results on three-dimensional momentum imaging measurements of anions generated via dissociative electron attachment to gaseous formamide. From the momentum images, we analyze the angular and kinetic energy distributions for NH$_2^{-}$, O$^{-}$, and H$^{-}$ fragments and discus...

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Veröffentlicht in:Physical review research 2021-01, Vol.3 (1), p.013082, Article 013082
Hauptverfasser: Panelli, Guglielmo, Moradmand, Ali, Griffin, Brandon, Swanson, Kyle, Weber, Thorsten, Rescigno, Thomas N., McCurdy, C. William, Slaughter, Daniel S., Williams, Joshua B.
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Sprache:eng
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Zusammenfassung:We report experimental results on three-dimensional momentum imaging measurements of anions generated via dissociative electron attachment to gaseous formamide. From the momentum images, we analyze the angular and kinetic energy distributions for NH$_2^{-}$, O$^{-}$, and H$^{-}$ fragments and discuss the possible electron attachment and dissociation mechanisms for multiple resonances for two ranges of incident electron energies, from 5.3~eV to 6.8~eV, and from 10.0~eV to 11.5~eV. {\it Ab initio} theoretical results for the angular distributions of the NH$_2^{-}$ anion for $\sim$6~eV incident electrons, when compared with the experimental results, strongly suggest that one of the two resonances producing this fragment is a $^2$A$''$ Feshbach resonance.
ISSN:2643-1564
2643-1564
DOI:10.1103/PhysRevResearch.3.013082