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Water is a radiation protection agent for ionised pyrrole.

Melby JohnyConstant A SchouderAhmed Al-RefaieLanhai HeJoss WieseHenrik StapelfeldtSebastian TrippelJochen Küpper
Published in: Physical chemistry chemical physics : PCCP (2024)
Radiation-induced damage of biological matter is an ubiquitous problem in nature. The influence of the hydration environment is widely discussed, but its exact role remains elusive. Utilising well defined solvated-molecule aggregates, we experimentally observed a hydrogen-bonded water molecule acting as a radiation protection agent for ionised pyrrole, a prototypical aromatic biomolecule. Pure samples of pyrrole and pyrrole(H 2 O) were outer-valence ionised and the subsequent damage and relaxation processes were studied. Bare pyrrole ions fragmented through the breaking of C-C or N-C covalent bonds. However, for pyrrole(H 2 O) + , we observed a strong protection of the pyrrole ring through the dissociative release of neutral water or by transferring an electron or proton across the hydrogen bond. Overall, a single water molecule strongly reduces the fragmentation probability and thus the persistent radiation damage of singly-ionised pyrrole.
Keyphrases
  • radiation induced
  • oxidative stress
  • radiation therapy
  • quantum dots
  • density functional theory
  • water soluble
  • electron microscopy