Field-driven reversible networks from colloidal rods
Fojo J, Subert R, Rodríguez-Arco L, López-López MT, Dijkstra M, Fernández-Rico C, Alvarez L. 2025. Field-driven reversible networks from colloidal rods. Soft Matter. 21(23), 4596–4605.
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Journal Article
| Published
| English
Scopus indexed
Author
Fojo, José;
Subert, Rodolfo;
Rodríguez-Arco, Laura;
López-López, Modesto T.;
Dijkstra, Marjolein;
Fernández-Rico, CarlaISTA;
Alvarez, Laura
Abstract
Highly interconnected percolated networks are interesting structures for materials with enhanced transport and mechanical properties. While percolated networks of anisotropic particles have been explored at the nanoscale, achieving highly interconnected structures at the microscale remains challenging. In this work, we explore the controlled assembly of rod-like polymer colloids under external fields leading to reversible quasi-2D networks. By varying voltage and frequency, we modulate the pore size and thickness of the network. We find that field-driven attractive interactions enable percolation at lower area fractions than predicted for non-interacting rods. Monte Carlo simulations incorporating dipolar interactions and electrostatic boundary conditions confirm the field-induced transition from isotropic to aligned rod configurations, supporting the emergence of percolated networks. This work presents a simple and robust approach for assembling reconfigurable colloidal networks with controlled connectivity, offering new strategies for designing adaptive soft materials.
Publishing Year
Date Published
2025-06-21
Journal Title
Soft Matter
Publisher
Royal Society of Chemistry
Volume
21
Issue
23
Page
4596-4605
ISSN
eISSN
IST-REx-ID
Cite this
Fojo J, Subert R, Rodríguez-Arco L, et al. Field-driven reversible networks from colloidal rods. Soft Matter. 2025;21(23):4596-4605. doi:10.1039/d5sm00218d
Fojo, J., Subert, R., Rodríguez-Arco, L., López-López, M. T., Dijkstra, M., Fernández-Rico, C., & Alvarez, L. (2025). Field-driven reversible networks from colloidal rods. Soft Matter. Royal Society of Chemistry. https://doi.org/10.1039/d5sm00218d
Fojo, José, Rodolfo Subert, Laura Rodríguez-Arco, Modesto T. López-López, Marjolein Dijkstra, Carla Fernández-Rico, and Laura Alvarez. “Field-Driven Reversible Networks from Colloidal Rods.” Soft Matter. Royal Society of Chemistry, 2025. https://doi.org/10.1039/d5sm00218d.
J. Fojo et al., “Field-driven reversible networks from colloidal rods,” Soft Matter, vol. 21, no. 23. Royal Society of Chemistry, pp. 4596–4605, 2025.
Fojo J, Subert R, Rodríguez-Arco L, López-López MT, Dijkstra M, Fernández-Rico C, Alvarez L. 2025. Field-driven reversible networks from colloidal rods. Soft Matter. 21(23), 4596–4605.
Fojo, José, et al. “Field-Driven Reversible Networks from Colloidal Rods.” Soft Matter, vol. 21, no. 23, Royal Society of Chemistry, 2025, pp. 4596–605, doi:10.1039/d5sm00218d.