Publication | Closed Access
Control over Hierarchy Levels in the Self-Assembly of Stackable Nanotoroids
155
Citations
35
References
2012
Year
Materials ScienceHierarchy LevelsOutstanding Self-organization ProcessEngineeringSupramolecular AssemblyBottom-up SynthesisNanomaterialsNanotechnologyMolecular Self-assemblySelf-assemblyNatural SciencesPrecise ControlChemistryHierarchical AssemblyBiophysicsNanoarchitectonicsNanostructures
We report a precise control over the hierarchy levels in the outstanding self-organization process shown by chiral azobenzene dimer 1. This compound forms uniform toroidal nanostructures that can hierarchically organize into chiral nanotubes under the control by temperature, concentration, or light. The nanotubes further organized into supercoiled fibrils, which finally intertwined to form double helices with one-handed helical sense.
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