PATRITO EDUARDO MARTÍN
Artículos
Título:
Rational Design of 2D Supramolecular Networks Switchable by External Electric Fields
Autor/es:
PATRITO, E. MARTÍN
Revista:
ACS NANO
Editorial:
AMER CHEMICAL SOC
Referencias:
Año: 2024 vol. 18 p. 4287 - 4287
ISSN:
1936-0851
Resumen:
he reversible formation of hydrogen bonds is a ubiquitous mechanism for controlling molecular assembly in biological systems. However, achieving predictable reversibility in artificial two-dimensional (2D) materials remains a significant challenge. Here, we use an external electric field (EEF) at the solid/liquid interface to trigger the switching of H-bond-linked 2D networks using a scanning tunneling microscope. Assisted by density functional theory and molecular dynamics simulations, we systematically vary the molecule-to-molecule interactions, i.e., the hydrogen-bonding strength, as well as the molecule-to-substrate interactions to analyze the EEF switching effect. By tuning the building block?s hydrogen-bonding ability (carboxylic acids vs aldehydes) and substrate nature and charge (graphite, graphene/Cu, graphene/SiO2), we induce or freeze the switching properties and control the final polymorphic output in the 2D network. Our results indicate that the switching ability is not i