Self-assembled peptide nanostructures have unique physical and biological properties and promising applications in electrical devices and functional molecular recognition. Although solution-based peptide molecules can self-assemble into different morphologies, it is challenging to control the self-assembly process. Herein, controllable self-assembly of diphenylalanine (FF) in an evaporative dewetting solution is reported. The fluid mechanical dimensionless numbers, namely Rayleigh, Marangoni, and capillary numbers, are introduced to control the interaction between the solution and FF molecules in the self-assembly process. The difference in the film thickness reflects the effects of Rayleigh and Marangoni convection, and the water vapor flo...
Stimuli-responsive peptide assembly has an excellent ability to change morphology, property or funct...
Stimuli-responsive peptide assembly has an excellent ability to change morphology, property or funct...
Stimuli-responsive peptide assembly has an excellent ability to change morphology, property or funct...
Nanostructures composed of short, noncyclic peptides represent a growing field of research in nanote...
Nanostructures composed of short, noncyclic peptides represent a growing field of research in nanote...
The diphenylalanine (FF) peptide self-assembles into a variety of nanostructures, including hollow n...
Ordered assemblies of the peptide diphenylalanine (FF) are produced and deposited on planar substrat...
Diphenylalanine (FF) is a peptide that can form different nanostructures; this makes it particularly...
Ordered assemblies of the peptide diphenylalanine (FF) are produced and deposited on planar substrat...
Ordered assemblies of the peptide diphenylalanine (FF) are produced and deposited on planar substrat...
AbstractStudies of peptide-based nanostructures provide general insights into biomolecular self-asse...
Ordered assemblies of the peptide diphenylalanine (FF) are produced and deposited on planar substrat...
The molecular design of peptide-assembled nanostructures relies on extensive knowledge pertaining to...
Self-assembly is a process of key importance in natural systems and in nanotechnology. Peptides are ...
Diphenylalanine is well known to form complex self-assembled structures, including peptide nanowires...
Stimuli-responsive peptide assembly has an excellent ability to change morphology, property or funct...
Stimuli-responsive peptide assembly has an excellent ability to change morphology, property or funct...
Stimuli-responsive peptide assembly has an excellent ability to change morphology, property or funct...
Nanostructures composed of short, noncyclic peptides represent a growing field of research in nanote...
Nanostructures composed of short, noncyclic peptides represent a growing field of research in nanote...
The diphenylalanine (FF) peptide self-assembles into a variety of nanostructures, including hollow n...
Ordered assemblies of the peptide diphenylalanine (FF) are produced and deposited on planar substrat...
Diphenylalanine (FF) is a peptide that can form different nanostructures; this makes it particularly...
Ordered assemblies of the peptide diphenylalanine (FF) are produced and deposited on planar substrat...
Ordered assemblies of the peptide diphenylalanine (FF) are produced and deposited on planar substrat...
AbstractStudies of peptide-based nanostructures provide general insights into biomolecular self-asse...
Ordered assemblies of the peptide diphenylalanine (FF) are produced and deposited on planar substrat...
The molecular design of peptide-assembled nanostructures relies on extensive knowledge pertaining to...
Self-assembly is a process of key importance in natural systems and in nanotechnology. Peptides are ...
Diphenylalanine is well known to form complex self-assembled structures, including peptide nanowires...
Stimuli-responsive peptide assembly has an excellent ability to change morphology, property or funct...
Stimuli-responsive peptide assembly has an excellent ability to change morphology, property or funct...
Stimuli-responsive peptide assembly has an excellent ability to change morphology, property or funct...