Peptides have become excellent platforms for the design of peptide-nanoparticle hybrid superstructures, owing to their self-assembly and binding/recognition capabilities. Morover, peptide sequences can be encoded and modified to finely tune the structure of the hybrid systems and pursue functionalities that hold promise in an array of high-end applications. This feature article summarizes the different methodologies that have been developed to obtain self-assembled peptide-inorganic nanoparticle hybrid architectures, and discusses how the proper encoding of the peptide sequences can be used for tailoring the architecture and/or functionality of the final systems. We also describe the applications of these hybrid superstructures in different...
With improved understanding of the design rules for self-assembling peptides, new challenges will be...
Filamentous materials have a range of applications in biology and materials science. Control of thei...
Filamentous materials have a range of applications in biology and materials science. Control of thei...
Peptides have become excellent platforms for the design of peptide-nanoparticle hybrid superstructur...
[Abstract] Peptides have become excellent platforms for the design of peptide–nanoparticle hybrid su...
This tutorial review looks at the design rules that allow peptides to be exploited as building block...
The aim of this research is to develop and generalize a peptide-based methodology for inorganic nano...
Natural supramolecular assemblies exhibit unique structural and functional properties that have been...
Peptide-based materials incorporate the hierarchical structure of proteins: amino acids on the molec...
Self‐assembled structures obtained from organic molecules have shown great potential for application...
Nature is an important inspirational source for scientists, and presents complex and elegant example...
Self-assembly at the nanoscale is becoming increasingly important for the fabrication of novel supr...
Peptide-based materials that have diverse structures and functionalities are an important type of bi...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
With improved understanding of the design rules for self-assembling peptides, new challenges will be...
Filamentous materials have a range of applications in biology and materials science. Control of thei...
Filamentous materials have a range of applications in biology and materials science. Control of thei...
Peptides have become excellent platforms for the design of peptide-nanoparticle hybrid superstructur...
[Abstract] Peptides have become excellent platforms for the design of peptide–nanoparticle hybrid su...
This tutorial review looks at the design rules that allow peptides to be exploited as building block...
The aim of this research is to develop and generalize a peptide-based methodology for inorganic nano...
Natural supramolecular assemblies exhibit unique structural and functional properties that have been...
Peptide-based materials incorporate the hierarchical structure of proteins: amino acids on the molec...
Self‐assembled structures obtained from organic molecules have shown great potential for application...
Nature is an important inspirational source for scientists, and presents complex and elegant example...
Self-assembly at the nanoscale is becoming increasingly important for the fabrication of novel supr...
Peptide-based materials that have diverse structures and functionalities are an important type of bi...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
With improved understanding of the design rules for self-assembling peptides, new challenges will be...
Filamentous materials have a range of applications in biology and materials science. Control of thei...
Filamentous materials have a range of applications in biology and materials science. Control of thei...