Assembly processes can drive the selection of self-assembling molecules in dynamic combinatorial libraries, yielding self-synthesizing materials. We now show how such selection in a dynamic combinatorial library made from an amphiphilic building block which, by itself, assembles into micelles, can yield membranous aggregates ranging from vesicles to sponge phases. These aggregates are made from a mixture of unconventional surfactant molecules, showing the power of dynamic combinatorial selection approaches for the discovery of new, not readily predictable, self-assembly motifs
In this thesis the development of surfactant aggregates with fast exchange dynamics between the aggr...
Self-assembly of small molecular components holds great promises as a bottom-up approach for nano-ob...
Amphiphiles are synthetic or natural molecules with the ability to self-assemble into a wide variety...
Assembly processes can drive the selection of self-assembling molecules in dynamic combinatorial lib...
Assembly processes can drive the selection of self-assembling molecules in dynamic combinatorial lib...
Self-assembly is a process in which molecules autonomously form ordered aggregates held together by ...
A family of self-replicating macrocycles was developed using dynamic combinatorial chemistry. Replic...
A family of self-replicating macrocycles was developed using dynamic combinatorial chemistry. Replic...
Self-assembly of small molecular components holds great promises as a bottom-up approach for nano-ob...
Self-assembly of molecular and block copolymer amphiphiles represents a well-established route to mi...
The presence of a self-replicator in a dynamic combinatorial library (DCL) offers function above and...
Amphiphiles aggregate in aqueous environment, forming a lipophilic phase which can include organic s...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
The synthesis of a series of co-oligomer amphiphiles by RAFT and their self-assembly behavior in wat...
Recent studies on the self-assembly of novel catanionic, bolaform and gemini surfactants provide evi...
In this thesis the development of surfactant aggregates with fast exchange dynamics between the aggr...
Self-assembly of small molecular components holds great promises as a bottom-up approach for nano-ob...
Amphiphiles are synthetic or natural molecules with the ability to self-assemble into a wide variety...
Assembly processes can drive the selection of self-assembling molecules in dynamic combinatorial lib...
Assembly processes can drive the selection of self-assembling molecules in dynamic combinatorial lib...
Self-assembly is a process in which molecules autonomously form ordered aggregates held together by ...
A family of self-replicating macrocycles was developed using dynamic combinatorial chemistry. Replic...
A family of self-replicating macrocycles was developed using dynamic combinatorial chemistry. Replic...
Self-assembly of small molecular components holds great promises as a bottom-up approach for nano-ob...
Self-assembly of molecular and block copolymer amphiphiles represents a well-established route to mi...
The presence of a self-replicator in a dynamic combinatorial library (DCL) offers function above and...
Amphiphiles aggregate in aqueous environment, forming a lipophilic phase which can include organic s...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
The synthesis of a series of co-oligomer amphiphiles by RAFT and their self-assembly behavior in wat...
Recent studies on the self-assembly of novel catanionic, bolaform and gemini surfactants provide evi...
In this thesis the development of surfactant aggregates with fast exchange dynamics between the aggr...
Self-assembly of small molecular components holds great promises as a bottom-up approach for nano-ob...
Amphiphiles are synthetic or natural molecules with the ability to self-assemble into a wide variety...