Shaping the aggregates of discotic particles with directional pair interactions

B Bruno Martínez-Haya (Center for Nanoscience and Sustainable Technologies (CNATS), Universidad Pablo de Olavide 2 , 41013 Seville,) N Neftalí Morillo (Center for Nanoscience and Sustainable Technologies (CNATS), and Department of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide , 41013 Seville,) A Alejandro Cuetos (Center for Nanoscience and Sustainable Technologies (CNATS), and Department of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide , 41013 Seville,)

Abstract

Aggregation processes in systems of planar macromolecules and colloids drive a broad range of phenomena in natural systems and soft materials. Depending on the chemical architecture, intermolecular interactions in these systems may favor different relative pair orientations, such as stacking face–face or percolating edge–edge arrangements. In this work, we employ a versatile coarse-grained interaction model for disk-like particles to provide a general framework to rationalize the thermotropic formation of aggregates and predict the topology of the resulting suprastructures. Monte Carlo and Brownian dynamics simulations show that, with appropriate tuning of the interactions, discotics spontaneously nucleate into clusters with globular, planar, or stacked geometries, leading to materials with specific internal order and associated physicochemical properties.

Article Details

Volume / Issue Vol. 163, Issue 22
Published December 14, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (3)

B

Bruno Martínez-Haya

Center for Nanoscience and Sustainable Technologies (CNATS), Universidad Pablo de Olavide 2 , 41013 Seville,

N

Neftalí Morillo

Center for Nanoscience and Sustainable Technologies (CNATS), and Department of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide , 41013 Seville,

A

Alejandro Cuetos

Center for Nanoscience and Sustainable Technologies (CNATS), and Department of Physical, Chemical and Natural Systems, Universidad Pablo de Olavide , 41013 Seville,