Universality of fractal aggregates as probed by light scattering
- 8 May 1989
- journal article
- Published by The Royal Society in Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences
- Vol. 423 (1864), 71-87
- https://doi.org/10.1098/rspa.1989.0042
Abstract
Fractal colloid aggregates are studied with both static and dynamic light scattering. The dynamic light scattering data are scaled onto a single master curve, whose shape is sensitive to the structure of the aggregates and their mass distribution. By using the structure factor determined from computer-simulated aggregates, and including the effects of rotational diffusion, we predict the shape of the master curve for different cluster distributions. Excellent agreement is found between our predictions and the data for the two limiting régimes, diffusion-limited and reaction-limited colloid aggregation. Furthermore, using data from several completely different colloids, we find that the shapes of the master curves are identical for each régime. In addition, the cluster fractal dimensions and the aggregation kinetics are identical in each régime. This provides convincing experimental evidence of the universality of these two régimes of colloid aggregation.Keywords
This publication has 26 references indexed in Scilit:
- Effect of rotational diffusion on quasielastic light scattering from fractal colloid aggregatesPhysical Review A, 1988
- Slow aggregation of colloidal silicaPhysical Review A, 1987
- Universal kinetics in reaction-limited aggregationPhysical Review Letters, 1987
- Quasielastic-scattering linewidths and relaxation times for surface and mass fractalsPhysical Review A, 1986
- Structure of Aggregated Gold ColloidsPhysical Review Letters, 1986
- On the hydrodynamic behavior of colloidal aggregatesZeitschrift für Physik B Condensed Matter, 1986
- Restructuring of colloidal silica aggregatesPhysical Review Letters, 1986
- Experimental Investigations on the Fractality and Kinetics of AggregationPublished by Springer Nature ,1986
- Computer simulation of chemically limited aggregationJournal of Physics A: General Physics, 1985
- Scaling of Kinetically Growing ClustersPhysical Review Letters, 1983