Publication | Closed Access
Design, Chirality, and Flexibility in Nanoporous Molecule-Based Materials
1.2K
Citations
26
References
2005
Year
Supramolecular AssemblyEngineeringNanoporous MaterialPorous MembranePorous PolymerChemistryChiral NanoporosityBiophysicsMaterials ScienceNanoporous Molecule-based MaterialsCovalent Bonded FrameworkMolecular MaterialPhysical ChemistryMolecular EngineeringOpen-framework StructuresNanomaterialsMolecule-sized ChannelsSelf-assemblyMolecule-based MaterialFunctional Materials
Scientific and technological interest in porous materials with molecule-sized channels and cavities has led to an intense search for controlled chemical routes to systems with specific properties. This Account details our work on directing the assembly of open-framework structures based on molecules and investigating how the response of nanoporous examples of such materials to guests differs from classical rigid porous systems. The stabilization of chiral nanoporosity by a hierarchy of interactions that both direct and maintain a helical open-framework structure exemplifies the approach.
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