This research aims to explore how noncovalent forces can form self-assembled structures with unique chiral properties.
Utilized noncovalent interactions to create nanoarchitectures with multiple components.
Examined the regulation of chirality at various hierarchical levels.
Demonstrated successful control over chirality via self-assembly.
Established the role of noncovalent forces in creating programmable supramolecular chirality.
Abstract
Employing noncovalent forces to fabricate self-assembled nanoarchitectures composed of multiple constituents regulates the expression of chirality across hierarchical levels.