Elastic microphase separation produces robust bicontinuous materials

Fernández-Rico C, Schreiber S, Oudich H, Lorenz C, Sicher A, Sai T, Bauernfeind V, Heyden S, Carrara P, Lorenzis LD, Style RW, Dufresne ER. 2024. Elastic microphase separation produces robust bicontinuous materials. Nature Materials. 23, 124–130.

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Author
Fernández-Rico, CarlaISTA; Schreiber, Sanjay; Oudich, Hamza; Lorenz, Charlotta; Sicher, Alba; Sai, Tianqi; Bauernfeind, Viola; Heyden, Stefanie; Carrara, Pietro; Lorenzis, Laura De; Style, Robert W.; Dufresne, Eric R.
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Abstract
Bicontinuous microstructures are essential to the function of diverse natural and synthetic systems. Their synthesis has been based on two approaches: arrested phase separation or self-assembly of block copolymers. The former is attractive for its chemical simplicity and the latter, for its thermodynamic robustness. Here we introduce elastic microphase separation (EMPS) as an alternative approach to make bicontinuous microstructures. Conceptually, EMPS balances the molecular-scale forces that drive demixing with large-scale elasticity to encode a thermodynamic length scale. This process features a continuous phase transition, reversible without hysteresis. Practically, EMPS is triggered by simply supersaturating an elastomeric matrix with a liquid, resulting in uniform bicontinuous materials with a well-defined microscopic length scale tuned by the matrix stiffness. The versatility of EMPS is further demonstrated by fabricating bicontinuous materials with superior mechanical properties and controlled anisotropy and microstructural gradients. Overall, EMPS presents a robust alternative for the bulk fabrication of homogeneous bicontinuous materials.
Publishing Year
Date Published
2024-01-01
Journal Title
Nature Materials
Publisher
Springer Nature
Volume
23
Page
124-130
ISSN
eISSN
IST-REx-ID

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Fernández-Rico C, Schreiber S, Oudich H, et al. Elastic microphase separation produces robust bicontinuous materials. Nature Materials. 2024;23:124-130. doi:10.1038/s41563-023-01703-0
Fernández-Rico, C., Schreiber, S., Oudich, H., Lorenz, C., Sicher, A., Sai, T., … Dufresne, E. R. (2024). Elastic microphase separation produces robust bicontinuous materials. Nature Materials. Springer Nature. https://doi.org/10.1038/s41563-023-01703-0
Fernández-Rico, Carla, Sanjay Schreiber, Hamza Oudich, Charlotta Lorenz, Alba Sicher, Tianqi Sai, Viola Bauernfeind, et al. “Elastic Microphase Separation Produces Robust Bicontinuous Materials.” Nature Materials. Springer Nature, 2024. https://doi.org/10.1038/s41563-023-01703-0.
C. Fernández-Rico et al., “Elastic microphase separation produces robust bicontinuous materials,” Nature Materials, vol. 23. Springer Nature, pp. 124–130, 2024.
Fernández-Rico C, Schreiber S, Oudich H, Lorenz C, Sicher A, Sai T, Bauernfeind V, Heyden S, Carrara P, Lorenzis LD, Style RW, Dufresne ER. 2024. Elastic microphase separation produces robust bicontinuous materials. Nature Materials. 23, 124–130.
Fernández-Rico, Carla, et al. “Elastic Microphase Separation Produces Robust Bicontinuous Materials.” Nature Materials, vol. 23, Springer Nature, 2024, pp. 124–30, doi:10.1038/s41563-023-01703-0.
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