Tuning morphologies of self-assembled structures in water is a major challenge. Here we present a salen-based amphiphile which, using complexation with distinct transition metal ions, allows to control effectively the self-assembly morphology in water, as observed by Cryo-TEM and confirmed by DLS measurements. Applying this strategy with various metal ions gives a broad spectrum of self-assembled structures starting from the same amphiphilic ligand (from cubic structures to vesicles and micelles). Thermogravimetric Analysis and Electric Conductivity measurements reveal a key role for water coordination apparently being responsible for the distinct assembly behavior.</p
We present the synthesis and self-assembly of a chiral bis(urea) amphiphile and show that chirality ...
A new amphiphilic receptor containing a macrocyclic anionic headgroup and a single alkyl chain was p...
Amphiphilic molecules, comprising hydrophobic and hydrophilic moieties and the intrinsic propensity ...
Tuning morphologies of self-assembled structures in water is a major challenge. Here we present a sa...
Tuning morphologies of self‐assembled structures in water is a major challenge. Herein we present a ...
Amphiphiles aggregate in aqueous environment, forming a lipophilic phase which can include organic s...
The synthesis and self-assembly behavior of newly designed BINOL-based amphiphiles is presented. Wit...
The synthesis of materials via self-assembly is a powerful bottom-up approach for assembling matter ...
The novel concept of amphiphilic molecular motors that self-assemble into responsive supramolecular ...
We report a short synthetic route for the preparation of a peptidic Au(i)-metalloamphiphile which, i...
The use of coordination-directed self-assembly has become an area of intense research for the synthe...
Inspired by the induced-fit mechanism in nature, we developed the process of water-induced self-asse...
We present the synthesis and self-assembly of a chiral bis(urea) amphiphile and show that chirality ...
A new amphiphilic receptor containing a macrocyclic anionic headgroup and a single alkyl chain was p...
Amphiphilic molecules, comprising hydrophobic and hydrophilic moieties and the intrinsic propensity ...
Tuning morphologies of self-assembled structures in water is a major challenge. Here we present a sa...
Tuning morphologies of self‐assembled structures in water is a major challenge. Herein we present a ...
Amphiphiles aggregate in aqueous environment, forming a lipophilic phase which can include organic s...
The synthesis and self-assembly behavior of newly designed BINOL-based amphiphiles is presented. Wit...
The synthesis of materials via self-assembly is a powerful bottom-up approach for assembling matter ...
The novel concept of amphiphilic molecular motors that self-assemble into responsive supramolecular ...
We report a short synthetic route for the preparation of a peptidic Au(i)-metalloamphiphile which, i...
The use of coordination-directed self-assembly has become an area of intense research for the synthe...
Inspired by the induced-fit mechanism in nature, we developed the process of water-induced self-asse...
We present the synthesis and self-assembly of a chiral bis(urea) amphiphile and show that chirality ...
A new amphiphilic receptor containing a macrocyclic anionic headgroup and a single alkyl chain was p...
Amphiphilic molecules, comprising hydrophobic and hydrophilic moieties and the intrinsic propensity ...