Strong adsorption of guanidinium cations to the air–water interface

F Franky Bernal (Department of Chemistry) A Amro Dodin (Chemical Sciences Division) C Constantine Kyprianou (Department of Chemistry) D David T. Limmer R Richard J. Saykally (Department of Chemistry)

Abstract

Combining Deep-UV second harmonic generation spectroscopy with molecular simulations, we confirm and quantify the specific adsorption of guanidinium cations to the air–water interface. Using a Langmuir analysis of measurements at multiple concentrations, we extract the Gibbs free energy of adsorption, finding it larger than typical thermal energies. Molecular simulations clarify the role of polarizability in tuning the thermodynamics of adsorption, and establish the preferential parallel alignment of guanidinium at the air–water interface. As a polyatomic cation, guanidinium represents one of the few examples of a positively charged species to exhibit a propensity for the air-water interface. As such, these results expand on the growing body of work on specific ion adsorption.

Article Details

Volume / Issue Vol. 122, Issue 2
Published January 14, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (5)

F

Franky Bernal

Department of Chemistry

A

Amro Dodin

Chemical Sciences Division

C

Constantine Kyprianou

Department of Chemistry

D

David T. Limmer

R

Richard J. Saykally

Department of Chemistry