Understanding the self-assembly of small molecules in water is crucial for the development of responsive, biocompatible soft materials. Here, a family of benzene-1,3,5-tricarboxamide (BTA) derivatives that comprise a BTA moiety connected to an amphiphilic chain is synthesised with the aim to elucidate the role of hydrophobic and hydrogen-bonding interactions in the self-assembly of these BTAs. The amphiphilic chain consists of an alkyl chain with a length of 10, 11, or 12 methylene units, connected to a tetraethylene glycol (at the periphery). The results show that an undecyl spacer is the minimum length required for these BTAs to self-assemble into supramolecular polymers. Interestingly, exchange studies reveal only minor differences in ex...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
\u3cp\u3eUnderstanding the self-assembly of small molecules in water is crucial for the development ...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
\u3cp\u3eUnderstanding the self-assembly of small molecules in water is crucial for the development ...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
Understanding the self-assembly of small molecules in water is crucial for the development of respon...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...
The formation of supramolecular polymers in water through rational design of a benzene-1,3,5-tricarb...