The double helix of DNA epitomizes this molecule's ability to self-assemble in aqueous solutions into a complex chiral structure using hydrogen bonding and hydrophobic interactions. Non-covalently interacting molecules in organic solvents are used to design systems that similarly form controlled architectures1, 2, 3, 4, 5, 6, 7. Peripheral chiral centres in assemblies8, 9 and chiral side chains attached to a polymer backbone10, 11 have been shown to induce chirality at the supramolecular level, and highly ordered structures stable in water are also known12, 13, 14, 15. However, it remains difficult to rationally exploit non-covalent interactions for the formation of chiral assemblies that are stable in water, where solvent molecules can com...
Hydrogen-bonded polymers are a class of highly dynamic supramolecular aggregates, whose self-assembl...
This work studies dynamic properties of molecular and supramolecular strands on both molecular and s...
The design and characterization of linear oligomers that self-assemble into double helical structure...
The double helix of DNA epitomizes this molecule's ability to self-assemble in aqueous solutions int...
Bifunctional ureido-s-triazines provided with penta(ethylene oxide) side chains are able to self ass...
A variety of discotic crystalline molecules are studied that form chiral polymeric assemblies in eit...
We report the selective formation of a self-assembled discrete helical assembly with handedness thro...
N,N',N''-trialkylated-benzene-1,3,5-tricarboxamides (BTAs) self-assemble via strong, threefold αheli...
Intermolecular forces drive self-organization of molecules, which is ultimately the origin of most t...
The present account describes the summary of the recent developments to the design of helical self-a...
Reversible self-assembly in water of small molecules into ordered structures is an essential process...
The self-assembly of small and relatively simple molecules has proven to be a powerful tool for the ...
A challenging target in the noncovalent synthesis of nanostructured functional materials is the form...
Hydrogen-bonded polymers are a class of highly dynamic supramolecular aggregates, whose self-assembl...
This work studies dynamic properties of molecular and supramolecular strands on both molecular and s...
The design and characterization of linear oligomers that self-assemble into double helical structure...
The double helix of DNA epitomizes this molecule's ability to self-assemble in aqueous solutions int...
Bifunctional ureido-s-triazines provided with penta(ethylene oxide) side chains are able to self ass...
A variety of discotic crystalline molecules are studied that form chiral polymeric assemblies in eit...
We report the selective formation of a self-assembled discrete helical assembly with handedness thro...
N,N',N''-trialkylated-benzene-1,3,5-tricarboxamides (BTAs) self-assemble via strong, threefold αheli...
Intermolecular forces drive self-organization of molecules, which is ultimately the origin of most t...
The present account describes the summary of the recent developments to the design of helical self-a...
Reversible self-assembly in water of small molecules into ordered structures is an essential process...
The self-assembly of small and relatively simple molecules has proven to be a powerful tool for the ...
A challenging target in the noncovalent synthesis of nanostructured functional materials is the form...
Hydrogen-bonded polymers are a class of highly dynamic supramolecular aggregates, whose self-assembl...
This work studies dynamic properties of molecular and supramolecular strands on both molecular and s...
The design and characterization of linear oligomers that self-assemble into double helical structure...