Page 23: Research news on Self-assembly

Self-assembly as a research area investigates the spontaneous organization of components into ordered structures driven by local interactions and thermodynamic or kinetic principles, without direct external manipulation of each element. It encompasses molecular, nanoscale, and mesoscale systems where noncovalent forces (e.g., van der Waals, electrostatic, hydrophobic, hydrogen bonding) or specific binding interactions encode structural information. Research focuses on understanding design rules, energy landscapes, and defect formation, as well as developing programmable systems (e.g., DNA origami, block copolymers, colloidal crystals) for applications in materials science, nanotechnology, and biotechnology, often linking equilibrium self-assembly with nonequilibrium and hierarchical assembly processes.

Light-controlled spontaneous growth of nanostructures

Ph.D. student Marloes Bistervels from the Self-Organizing Matter research group at AMOLF has managed to use light to very precisely control the formation of nanocomposites in the shape of corals and vases. By illuminating ...

Binary mesocrystals from the nano-building kit

Mesocrystals are a class of solids formed by the regular arrangement of nanocrystals, which are tiny nanoparticles that have unique properties due to their small size. In mesocrystals, these take on a highly organized, superordinate ...

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