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February 27, 2026The Journal of Physical Chemistry A0 citationsOpen Access

Formation of the Long-Lived Parent Anion upon Electron Attachment to Menadione

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FIFarhad IzadiAPAndrzej PelcJAJoão Ameixa

Key Points

  • This study aims to explore how menadione behaves when it interacts with electrons, particularly focusing on the formation of stable anions.
  • Conducted crossed electron-molecular beam experiments to analyze electron attachment.
  • Performed quantum chemical calculations to assist in understanding the anion formation.
  • Carried out electron scattering calculations to analyze the stability of formed anions.
  • Efficient formation of the parent molecular anion of menadione was observed.
  • Anion signal ranges from 0 to 2.5 eV with peaks near 0 and 0.7 eV for precursor anion states.
  • Detected fragment anions C2H2- and CH3- with lower efficiency at energies above 4 eV.
  • The parent anion exhibits a long lifetime that may be increased in biological environments.

Abstract

Menadione is a multifunctional molecule involved in critical biological processes such as blood coagulation, redox regulation, and cellular metabolism. Understanding its electron attachment properties and capacity to form stable anions is essential for elucidating its function in biological environments. In this study, we investigated electron attachment to menadione using a crossed electron-molecular beam experiment, complemented by quantum chemical and electron scattering calculations. Upon electron attachment, the efficient formation of the parent molecular anion is observed. Its signal extends from 0 to 2.5 eV, with pronounced peaks at ∼0 and 0.7 eV, assigned to the formation of different precursor anion states. Two fragment anions, namely, C2H2- and CH3-, were also detected. In contrast to the parent anion, their formation occurs with significantly lower efficiency and only at higher electron energies, above 4 eV, consistent with the higher energy thresholds required for dissociative electron attachment. Our findings show, on the one hand, that the metastable parent anion of menadione has a relatively long lifetime, which may be further extended in biological environments due to solvent effects, and, on the other hand, that it is structurally stable in the interaction with low-energy electrons.

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Cite This Study

Izadi et al. (2026) studied this question.

synapsesocial.com/papers/69a13571ed1d949a99abf498https://doi.org/10.1021/acs.jpca.5c07629
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