We have studied complexes of gold atoms and imidazole (C3N2H4, abbreviated Im) produced in helium nanodroplets. Following the ionization of the doped droplets we detect a broad range of different AumImn+ complexes, however we find that for specific values of m certain n are "magic" and thus particularly abundant. Our density functional theory calculations indicate that these abundant clusters sizes are partially the result of particularly stable complexes, e.g. AuIm2+, and partially due to a transition in fragmentation patterns from the loss of neutral imidazole molecules for large systems to the loss of neutral gold atoms for smaller systems.
@article{arxiv.1912.01357,
title = {Complexes of gold and imidazole formed in helium nanodroplets},
author = {Michael Gatchell and Marcelo Goulart and Lorentz Kranabetter and Martin Kuhn and Paul Martini and Bilal Rasul and Paul Scheier},
journal= {arXiv preprint arXiv:1912.01357},
year = {2019}
}
Comments
7 pages, 9 figures, published in Physical Chemistry Chemical Physics