Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here, we show an example where all enantiomers, diastereomers and racemates of a single functionalized dipeptide can form gels. At high pH, different self-assembled aggregates are formed and these directly template the structures formed in the gel. Hence, solutions and gels with different properties can be accessed simply by varying the chirality. This opens up new design rules for the field
Low molecular weight hydrogels are formed by molecules that form a matrix that immobilises water to ...
Natural supramolecular systems typically contain a wide variety of chiral molecules. Studying the ch...
We show that the same low molecular weight gelator can form gels using three different methods. Gels...
Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here...
Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here...
The impact of chirality on the self-assembly of supramolecular gels is of considerable importance, a...
The impact of chirality on the self-assembly of supramolecular gels is of considerable importance, a...
We investigate a two-component acid-amine gelation system in which chirality plays a vital role. A c...
Supramolecular gels can be prepared by the self-assembly of small molecules into fibrous structures....
The impact of chirality on the self-assembly of supramolecular gels is of considerable importance, a...
The impact of chirality on the self-assembly of supramolecular gels is of considerable importance, a...
We investigate a two-component acid-amine gelation system in which chirality plays a vital role. A c...
Mixing supramolecular gels based on enantiomers leads to re-arrangement of gel fibers at the molecul...
A chiral organogelator has been synthesized that can be racemized and self-assembled in apolar solve...
A chiral organogelator has been synthesized that can be racemized and self-assembled in apolar solve...
Low molecular weight hydrogels are formed by molecules that form a matrix that immobilises water to ...
Natural supramolecular systems typically contain a wide variety of chiral molecules. Studying the ch...
We show that the same low molecular weight gelator can form gels using three different methods. Gels...
Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here...
Most low molecular weight gelators are chiral, with racemic mixtures often unable to form gels. Here...
The impact of chirality on the self-assembly of supramolecular gels is of considerable importance, a...
The impact of chirality on the self-assembly of supramolecular gels is of considerable importance, a...
We investigate a two-component acid-amine gelation system in which chirality plays a vital role. A c...
Supramolecular gels can be prepared by the self-assembly of small molecules into fibrous structures....
The impact of chirality on the self-assembly of supramolecular gels is of considerable importance, a...
The impact of chirality on the self-assembly of supramolecular gels is of considerable importance, a...
We investigate a two-component acid-amine gelation system in which chirality plays a vital role. A c...
Mixing supramolecular gels based on enantiomers leads to re-arrangement of gel fibers at the molecul...
A chiral organogelator has been synthesized that can be racemized and self-assembled in apolar solve...
A chiral organogelator has been synthesized that can be racemized and self-assembled in apolar solve...
Low molecular weight hydrogels are formed by molecules that form a matrix that immobilises water to ...
Natural supramolecular systems typically contain a wide variety of chiral molecules. Studying the ch...
We show that the same low molecular weight gelator can form gels using three different methods. Gels...