For the development of applications and novel uses for peptide nanostructures, robust routes for their surface functionalization, that ideally do not interfere with their self-assembly properties, are required. Many existing methods rely on covalent functionalization, where building blocks are appended with functional groups, either pre- or post-assembly. A facile supramolecular approach is demonstrated for the formation of functionalized nanofibers by combining the advantages of biocatalytic self-assembly and surfactant/gelator co-assembly. This is achieved by enzymatically triggered reconfiguration of free flowing micellar aggregates of pre-gelators and functional surfactants to form nanofibers that incorporate and display the surfactants...
We report on the biocatalytic activation of a self-assembling (unprotected) tripeptide to stabilize ...
Combining (bio-)catalysis and molecular self-assembly provides an effective approach for the product...
Self-assembly of molecular building blocks has attracted increasing interest as an effective bottom-...
For the development of applications and novel uses for peptide nanostructures, robust routes for the...
YesFor the development of applications and novel uses for peptide nanostructures, robust routes for ...
A facile supramolecular approach is demonstrated for the formation of functionalized nanofibers by c...
This thesis was previously held under moratorium from 27th July 2015 until 1st April 2020Molecular s...
Post-assembly functionalization of supramolecular nanostructures has the potential to expand the ran...
This thesis was previously restricted to Strathclyde users only from 1st October 2017 until 15 Novem...
Self-assembled nanofibers are ubiquitous in nature and serve as inspiration for the design of supram...
The molecular self-assembly of aromatic peptide amphiphiles has raised interest through the last dec...
*S Supporting Information ABSTRACT: Post-assembly functionalization of supramolecular nanostructures...
Self-assembled nanofibers are ubiquitous in nature and serve as inspiration for the design of supram...
We report on the biocatalytic activation of a self-assembling (unprotected) tripeptide to stabilize ...
Combining (bio-)catalysis and molecular self-assembly provides an effective approach for the product...
Self-assembly of molecular building blocks has attracted increasing interest as an effective bottom-...
For the development of applications and novel uses for peptide nanostructures, robust routes for the...
YesFor the development of applications and novel uses for peptide nanostructures, robust routes for ...
A facile supramolecular approach is demonstrated for the formation of functionalized nanofibers by c...
This thesis was previously held under moratorium from 27th July 2015 until 1st April 2020Molecular s...
Post-assembly functionalization of supramolecular nanostructures has the potential to expand the ran...
This thesis was previously restricted to Strathclyde users only from 1st October 2017 until 15 Novem...
Self-assembled nanofibers are ubiquitous in nature and serve as inspiration for the design of supram...
The molecular self-assembly of aromatic peptide amphiphiles has raised interest through the last dec...
*S Supporting Information ABSTRACT: Post-assembly functionalization of supramolecular nanostructures...
Self-assembled nanofibers are ubiquitous in nature and serve as inspiration for the design of supram...
We report on the biocatalytic activation of a self-assembling (unprotected) tripeptide to stabilize ...
Combining (bio-)catalysis and molecular self-assembly provides an effective approach for the product...
Self-assembly of molecular building blocks has attracted increasing interest as an effective bottom-...