April 17, 2026
Journal Article

Effects of particle shape and surface roughness on van der Waals interactions and coupling to dynamics in nanocrystals

Abstract

The van der Waals interaction between colloids and nanoparticles is one of the key components to understanding particle aggregation, attachment, and assembly. While the ubiquity of anisotropic particle shapes and surface roughness is well-recognized in nanocrystalline materials, the effect of both on van der Waals forces and torques has not been adequately investigated. In this study, we develop a numerical scheme and determine the van der Waals forces and torques between cubic particles with multiple configurations and relative orientations. Our results show that the van der Waals torque due to anisotropic particle shapes is appreciable at nearly all configurations and mutual angles, outcompeting Brownian motion for various materials systems and conditions. The effect of surface roughness increases this shape effect, resulting in stronger van der Waals interactions ascribed to protrusions in the rough surfaces. Moreover, a scaling analysis indicates that the surface roughness alters the separation dependence of the van der Waals force and, more importantly, significantly influences the dynamics of two approaching particles. Our results clearly demonstrate that surface roughness and anisotropic shape play a crucial role in the energetics and kinetics of various particle-scale and emergent phenomena, such as crystal growth by oriented attachment, nanomaterials synthesis and assembly, mud flow rheology, as well as the deposition of natural nanocrystals within the subsurface.

Published: April 17, 2026

Citation

Lee J., E. Nakouzi, J. Heo, B.A. Legg, G.K. Schenter, D. Li, and C. Park, et al. 2023. Effects of particle shape and surface roughness on van der Waals interactions and coupling to dynamics in nanocrystals. Journal of Colloid and Interface Science 652 Part B:1974-1983. PNNL-SA-184197. doi:10.1016/j.jcis.2023.08.160

Research topics