Plasmonic nanoparticles, due to their sensitivity to small changes in their closest environment and plasmon resonance, can sense the chirality of the surrounding molecules. Therefore, plasmonic nanoparticles can be applied as a next-generation biosensor for peptides or proteins. In this work, we explore the interaction between chiral, ordered protein aggregates (amyloids) and small gold nanobipyramids. We show how the morphology, structure, and chiroptical properties of amyloids induce circular dichroism in the plasmon resonance wavelengths from individual plasmonic nanoparticles upon binding to the chiral amyloid template. Moreover, using the data from microscopic and spectroscopic analyses of formed heterostructures, we propose the most p...
Au nanoparticles grown on D- and L-isomers of diphenylalanine peptide nanotubes showed a bisignated ...
Nanoscale plasmonic assemblies display exceptionally strong chiral optical activity. So far, their s...
Molecular recognition, which is key to the correct functioning of most biological processes, is base...
Amyloid fibrils, which are closely associated with various neurodegenerative diseases, are the final...
Chiral assemblies of nanoparticles (NPs) are typically constructed with helical or tetrahedral geome...
The ability to detect chirality gives stereochemically attuned nanosensors the potential to revoluti...
none9siChiral plasmonic nanomaterials exhibiting intense optical activity are promising for numerous...
Protein/Peptide amyloidosis is the main cause of several diseases, such as neurodegenerative disease...
In this Letter, gold nanorods (Au NRs) and gold nanoparticles (Au NPs) were assembled into core–sate...
The chirality of biomacromolecules is critical for their function, but the optical signal of this ch...
This thesis explores the potential of chiral plasmonic nanostructures for the ultrasensitive detecti...
The charge distributions of solvent exposed surfaces of complex biomolecules such has proteins are u...
Chiral plasmonic nanostructures have opened up unprecedented opportunities in optical applications. ...
Even after more than two decades of intense studies, the research on self‐assembly processes involvi...
Molecular chirality plays fundamental roles in biology. The chiral response of a molecule occurs at ...
Au nanoparticles grown on D- and L-isomers of diphenylalanine peptide nanotubes showed a bisignated ...
Nanoscale plasmonic assemblies display exceptionally strong chiral optical activity. So far, their s...
Molecular recognition, which is key to the correct functioning of most biological processes, is base...
Amyloid fibrils, which are closely associated with various neurodegenerative diseases, are the final...
Chiral assemblies of nanoparticles (NPs) are typically constructed with helical or tetrahedral geome...
The ability to detect chirality gives stereochemically attuned nanosensors the potential to revoluti...
none9siChiral plasmonic nanomaterials exhibiting intense optical activity are promising for numerous...
Protein/Peptide amyloidosis is the main cause of several diseases, such as neurodegenerative disease...
In this Letter, gold nanorods (Au NRs) and gold nanoparticles (Au NPs) were assembled into core–sate...
The chirality of biomacromolecules is critical for their function, but the optical signal of this ch...
This thesis explores the potential of chiral plasmonic nanostructures for the ultrasensitive detecti...
The charge distributions of solvent exposed surfaces of complex biomolecules such has proteins are u...
Chiral plasmonic nanostructures have opened up unprecedented opportunities in optical applications. ...
Even after more than two decades of intense studies, the research on self‐assembly processes involvi...
Molecular chirality plays fundamental roles in biology. The chiral response of a molecule occurs at ...
Au nanoparticles grown on D- and L-isomers of diphenylalanine peptide nanotubes showed a bisignated ...
Nanoscale plasmonic assemblies display exceptionally strong chiral optical activity. So far, their s...
Molecular recognition, which is key to the correct functioning of most biological processes, is base...