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Updated: May 30, 2026

Synthesis and Characterization of Supramolecular Colloids
Published on: April 22, 2016
Highly monodisperse core-shell particles created by solid-state reactions
V Radmilovic1, C Ophus, E A Marquis
1National Center for Electron Microscopy, Materials Science Division, Lawrence Berkeley National Lab, Berkeley, California 94720, USA. VRRadmilovic@lbl.gov
Abstract:
The size distribution of particles, which is essential for many properties of nanomaterials, is equally important for the mechanical behaviour of the class of alloys whose strength derives from a dispersion of nanoscale precipitates. However, particle size distributions formed by solid-state precipitation are generally not well controlled. Here we demonstrate, through the example of core-shell precipitates in Al-Sc-Li alloys, an approach to forming highly monodisperse particle size distributions by simple solid-state reactions. The approach involves the use of a two-step heat treatment, whereby the core formed at high temperature provides a template for growth of the shell at lower temperature. If the core is allowed to grow to a sufficient size, the shell develops in a 'size focusing' regime, where smaller particles grow faster than larger ones. These results suggest strategies for manipulating precipitate size distributions in similar systems through simple variations in thermal treatments.
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