Authors
Vincenzo Carravetta, Anderson Herbert de Abreu Gomes, Susanna Monti, Alexandra Mocellin, Ricardo RT Marinho, Olle Bjorneholm, Hans Ågren, Arnaldo Naves de Brito
Publication date
2019/4/9
Journal
The Journal of Physical Chemistry B
Volume
123
Issue
17
Pages
3776-3785
Publisher
American Chemical Society
Description
The distribution and protonation states of amino acids in water droplets are of considerable concern in studies on the formation of clouds in the atmosphere as well as in many biological contexts. In the present work we use the amino acid cysteine as a prototypical example and explore the protonation states of this molecule in aqueous solution, which are strongly affected by the acidity of the environment and also can show different distributions between surface and bulk. We use a combination of X-ray photoelectron chemical shift measurements, density functional theory calculations of the shifts, and reactive force field molecular dynamics simulations of the underlying structural dynamics. We explore how the photoelectron spectra distinctly reflect the different protonation states that are generated by variation of the solution acidity and how the distribution of these protonation states can differ between bulk and surface …
Total citations
20202021202220232111
Scholar articles
V Carravetta, AH de Abreu Gomes, S Monti, A Mocellin… - The Journal of Physical Chemistry B, 2019