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Hierarchical self-assembly of anisotropic colloidal platelets

Authors :
Karner, Carina
Dellago, Christoph
Bianchi, Emanuela
Publication Year :
2020

Abstract

Anisotropy at the level of the inter-particle interaction provides the particles with specific instructions for the self-assembly of target structures. The ability to synthesize non-spherical colloids, together with the possibility of controlling the particle bonding pattern via suitably placed interaction sites, is nowadays enlarging the playfield for materials design. We consider a model of anisotropic colloidal platelets with regular rhombic shape and two attractive sites placed along adjacent edges and we run Monte Carlo simulations in two-dimensions to investigate the two-stage assembly of these units into clusters with well-defined symmetries and, subsequently, into extended lattices. Our focus is on how the site positioning and site-site attraction strength can be tuned to obtain micellar aggregates that are robust enough to successively undergo to a second-stage assembly from sparse clusters into a stable hexagonal lattice.<br />Comment: 13 pages, 14 figures

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2001.00373
Document Type :
Working Paper