1. Academic Validation
  2. Superoxide Production under Soft X-ray Irradiation of Liquid Water

Superoxide Production under Soft X-ray Irradiation of Liquid Water

  • J Phys Chem B. 2023 May 4. doi: 10.1021/acs.jpcb.3c00932.
Aashini Rajpal 1 2 3 Lucie Huart 1 2 3 Christophe Nicolas 3 Corinne Chevallard 1 Jean-Michel Guigner 2 Paulo Dasilva 3 Pascal Mercere 3 Benoit Gervais 4 Marie-Anne Hervé du Penhoat 2 Jean-Philippe Renault 1
Affiliations

Affiliations

  • 1 Université Paris-Saclay, CEA, CNRS, NIMBE, Gif-sur-Yvette 91191, France.
  • 2 Sorbonne Université, IMPMC, UMR CNRS 7590, IMPMC, 75005 Paris, France.
  • 3 Synchrotron SOLEIL, Saint Aubin 91190, France.
  • 4 CIMAP, UMR 6252, Caen 14000, France.
Abstract

Soft X-rays behave like particles with high linear energy transfer, as they deposit a large amount of their energy in the nanometric range, triggered by inner-shell ionization. In water, this can lead to the formation of a doubly ionized water molecule (H2O2+) and the emission of two secondary electrons (photoelectron and Auger electron). Our focus lies on detecting and quantifying the superoxide (HO2°) production via the direct pathway, i.e., from the reaction between the dissociation product of H2O2+, i.e., the oxygen atom (∼4 fs), and the °OH radicals present in the secondary electron tracks. The HO2° yield for 1620 eV photons, via this reaction pathway, was found to be 0.005 (±0.0007) μmol/J (formed within the ∼ps range). Experiments were also performed to determine the yield of HO2° production via another (indirect) pathway, involving solvated electrons. The indirect HO2° yield, measured experimentally as a function of photon energy (from 1700 to 350 eV), resulted in a steep decrease at around 1280 eV and a minimum close to zero at 800 eV. This behavior in contradiction with the theoretical prediction reveals the complexity hidden in the intratrack reactions.

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