Spontaneous organization of supracolloids into three-dimensional structured materials

Publication date

2021-04

Authors

Moradi, Mohammad Amin
Eren, E. Deniz
Chiappini, MassimilianoISNI 0000000506355213
Rzadkiewicz, Sebastian
Goudzwaard, Maurits
van Rijt, Mark M.J.
Keizer, Arthur D.A.
Routh, Alexander F.
Dijkstra, MarjoleinISNI 0000000358257928
de With, Gijsbertus

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Supervisors

Document Type

Article
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License

taverne

Abstract

Periodic nano- or microscale structures are used to control light, energy and mass transportation. Colloidal organization is the most versatile method used to control nano- and microscale order, and employs either the enthalpy-driven self-assembly of particles at a low concentration or the entropy-driven packing of particles at a high concentration. Nonetheless, it cannot yet provide the spontaneous three-dimensional organization of multicomponent particles at a high concentration. Here we combined these two concepts into a single strategy to achieve hierarchical multicomponent materials. We tuned the electrostatic attraction between polymer and silica nanoparticles to create dynamic supracolloids whose components, on drying, reorganize by entropy into three-dimensional structured materials. Cryogenic electron tomography reveals the kinetic pathways, whereas Monte Carlo simulations combined with a kinetic model provide design rules to form the supracolloids and control the kinetic pathways. This approach may be useful to fabricate hierarchical hybrid materials for distinct technological applications.

Keywords

Taverne, General Chemistry, General Materials Science, Condensed Matter Physics, Mechanics of Materials, Mechanical Engineering

Citation

Moradi, M A, Eren, E D, Chiappini, M, Rzadkiewicz, S, Goudzwaard, M, van Rijt, M M J, Keizer, A D A, Routh, A F, Dijkstra, M, de With, G, Sommerdijk, N, Friedrich, H & Patterson, J P 2021, 'Spontaneous organization of supracolloids into three-dimensional structured materials', Nature Materials, vol. 20, no. 4, pp. 541-547. https://doi.org/10.1038/s41563-020-00900-5