Self-assembly is the most suitable approach to obtaining peptide-based materials on the nano- and mesoscopic scales. Applications span from peptide drugs for personalized therapy to light harvesting and electron conductive media for solar energy production and bioelectronics, respectively. In this study, we will discuss the self-assembly of selected model and bioactive peptides, in particular reviewing our recent work on the formation of peptide architectures of nano- and mesoscopic size in solution and on solid substrates. The hierarchical and cooperative characters of peptide self-assembly will be highlighted, focusing on the structural and dynamical properties of the peptide building blocks and on the nature of the intermolecular interac...
Self-assembly is omnipresent in nature. While natural self-assembly systems are complicated in struc...
Self-assembling peptides have gained increasing attention as versatile molecules to generate diverse...
The formation of well-ordered nanostructures through self-assembly of diverse organic and inorganic ...
Self-assembly is the most suitable approach to obtain peptide-based materials on the nano- 9 and mes...
Self-assembly at the nanoscale is becoming increasingly important for the fabrication of novel supr...
In recent years, self-assembled peptide nanotechnology has attracted a great deal of attention for i...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Among the diversity of natural and synthetic compounds being studied and applied for human welfare, ...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Self-assembled structures obtained from organic molecules have shown great potential for application...
Self-assembly is a ubiquitous process in biology where it plays numerous important roles and underli...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Self‐assembled structures obtained from organic molecules have shown great potential for application...
Peptide-based materials that have diverse structures and functionalities are an important type of bi...
Self-assembling peptides form a prominent class of supramolecular materials with in general good bio...
Self-assembly is omnipresent in nature. While natural self-assembly systems are complicated in struc...
Self-assembling peptides have gained increasing attention as versatile molecules to generate diverse...
The formation of well-ordered nanostructures through self-assembly of diverse organic and inorganic ...
Self-assembly is the most suitable approach to obtain peptide-based materials on the nano- 9 and mes...
Self-assembly at the nanoscale is becoming increasingly important for the fabrication of novel supr...
In recent years, self-assembled peptide nanotechnology has attracted a great deal of attention for i...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Among the diversity of natural and synthetic compounds being studied and applied for human welfare, ...
Self-assembling peptides could be considered a novel class of agents able to harvest an array of mic...
Self-assembled structures obtained from organic molecules have shown great potential for application...
Self-assembly is a ubiquitous process in biology where it plays numerous important roles and underli...
Molecular self-assembly is a key function in biology and has been developed as an elegant technique ...
Self‐assembled structures obtained from organic molecules have shown great potential for application...
Peptide-based materials that have diverse structures and functionalities are an important type of bi...
Self-assembling peptides form a prominent class of supramolecular materials with in general good bio...
Self-assembly is omnipresent in nature. While natural self-assembly systems are complicated in struc...
Self-assembling peptides have gained increasing attention as versatile molecules to generate diverse...
The formation of well-ordered nanostructures through self-assembly of diverse organic and inorganic ...