Nanoparticle halos: A new colloid stabilization mechanism
- 10 July 2001
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 98 (16) , 8950-8954
- https://doi.org/10.1073/pnas.151063098
Abstract
A new mechanism for regulating the stability of colloidal particles has been discovered. Negligibly charged colloidal microspheres, which flocculate when suspended alone in aqueous solution, undergo a remarkable stabilizing transition upon the addition of a critical volume fraction of highly charged nanoparticle species. Zeta potential analysis revealed that these microspheres exhibited an effective charge buildup in the presence of such species. Scanning angle reflectometry measurements indicated, however, that these nanoparticle species did not adsorb on the microspheres under the experimental conditions of interest. It is therefore proposed that highly charged nanoparticles segregate to regions near negligibly charged microspheres because of their repulsive Coulombic interactions in solution. This type of nanoparticle haloing provides a previously unreported method for tailoring the behavior of complex fluids.Keywords
This publication has 35 references indexed in Scilit:
- Solid Freeform Fabrication of Aqueous Alumina–Poly(vinyl alcohol) Gelcasting SuspensionsJournal of the American Ceramic Society, 2000
- Macroions in Salty Water with Multivalent Ions: Giant Inversion of ChargePhysical Review Letters, 2000
- Mechanical properties of acrylic based latex blend coatingsPolymer Engineering & Science, 2000
- Depletion Attraction Caused by Unadsorbed PolyelectrolytesLangmuir, 1998
- Photonic band gaps in colloidal systemsPhysical Review B, 1998
- Enhancement of Protein Crystal Nucleation by Critical Density FluctuationsScience, 1997
- Depletion flocculation in colloidal dispersionsAdvances in Colloid and Interface Science, 1996
- Phase Behavior of Small Attractive Colloidal ParticlesPhysical Review Letters, 1996
- Double Layer Forces between Heterogeneous Charged SurfacesThe Journal of Physical Chemistry, 1994
- Phase separations induced in aqueous colloidal suspensions by dissolved polymerFaraday Discussions of the Chemical Society, 1983