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Updated: Dec 7, 2025

Facet-to-facet Linking of Shape-anisotropic Colloidal Cadmium Chalcogenide Nanostructures
Published on: August 10, 2017
Simulating facet-dependent aggregation and assembly of distributions of polyhedral nanoparticles
George Opletal1, Shery L Chang2, Amanda S Barnard3
1Data61 CSIRO, Door 34 Goods Shed Village St, Docklands, Victoria, Australia. george.opletal@data61.csiro.au.
Abstract:
Coarse-grained molecular dynamics simulations of diamond nanoparticles were performed to investigate the effects of size polydispersity on three polyhedral shapes chosen to span a diverse space of surface interactions. It was found that the resulting self-assembly was size dependent as the simulations were quenched, with the largest nanoparticles providing a clustered scaffold for subsequent smaller nanoparticle assembly. Additionally, facet-facet interactions were dominated by the {111} surface and the resulting aggregate was dominated by meso-sized porosity for monodisperse systems, broadening to larger diameters for polydisperse systems.

