Publication | Closed Access
Phase formation in colloidal systems with tunable interaction
23
Citations
21
References
2015
Year
Colloidal MaterialEngineeringMolecular Self-assemblyMagnetic ResonanceMagnetismBiophysicsPhysicsColloidal ParticlesLow-dimensional SystemsPhase DiagramColloidal SystemSpintronicsSelf-assemblyCondensed Matter PhysicsApplied PhysicsColloidal SystemsMedicinePhase FormationNanomagnetism
Self-assembly is one of the most fascinating phenomena in nature and is one key component in the formation of hierarchical structures. The formation of structures depends critically on the interaction between the different constituents, and therefore the link between these interactions and the resulting structure is fundamental for the understanding of materials. We have realized a two-dimensional system of colloidal particles with tunable magnetic dipole forces. The phase formation is studied by transmission optical microscopy and a phase diagram is constructed. We report a phase transition from hexagonal to random and square arrangements when the magnetic interaction between the individual particles is tuned from antiferromagnetic to ferrimagnetic.
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