Herein, we study how optical properties of colloidal dispersions of noble metal nanoparticles (Au and Ag) are affected by processes such as aggregation and oxidative dissolution. The optical contributions of these processes to the extinction spectra in the UV-vis region are often overlapped, making difficult its interpretation. In this regard, modeling the UV-vis spectra (in particular absorbance curve, peaks position, intensity and full width at half maximum-FWHM) of each process separately offers a powerful tool to identify the transformation of NPs under relevant and complex scenarios, such as in biological media. The proper identification of these transformations is crucial to understand the biological effects of the NPs
Surface modifications of highly monodisperse citrate-stabilized gold nanoparticles (AuNPs) with size...
Noble metal nanoparticles possess interesting optical properties that make them suitable for potenti...
Metal nanoparticles (NPs) scatter and absorb light in precise, designable ways, making them agile ca...
The interaction of nanoparticles (NPs) with proteins is widely investigated since it can be a key is...
Aβ1-40 coated 20 nm gold colloidal nanoparticles exhibit a reversible color change as pH is external...
The exploitation of silver nanoparticles (AgNPs) in biomedicine represents more than one third of th...
When a nanomaterial enters a biological system, proteins adsorb onto the particle surface and alter ...
The morphological stability/morphological reshaping of noble metal nanoparticles are studied experim...
Silver nanoparticles (Ag NPs) have been inevitably introduced into ecological environment during the...
Nanoparticles are finding more practical applications in various fields of human activity, including...
Nanomaterials are gaining large amounts of traction due to the enhancement of certain properties tha...
On a nanometric scale, noble metal particles have fascinating optical properties. They are dominated...
Nanoparticles (NPs) show promising applications in biomedicine, catalysis, and energy harvesting. Th...
Absolute extinction measurements on individual silver nanoparticles under illumination show a steady...
A new method is developed referred to as Gold Nanorod Optical Modeling Equations (GNOME) for determi...
Surface modifications of highly monodisperse citrate-stabilized gold nanoparticles (AuNPs) with size...
Noble metal nanoparticles possess interesting optical properties that make them suitable for potenti...
Metal nanoparticles (NPs) scatter and absorb light in precise, designable ways, making them agile ca...
The interaction of nanoparticles (NPs) with proteins is widely investigated since it can be a key is...
Aβ1-40 coated 20 nm gold colloidal nanoparticles exhibit a reversible color change as pH is external...
The exploitation of silver nanoparticles (AgNPs) in biomedicine represents more than one third of th...
When a nanomaterial enters a biological system, proteins adsorb onto the particle surface and alter ...
The morphological stability/morphological reshaping of noble metal nanoparticles are studied experim...
Silver nanoparticles (Ag NPs) have been inevitably introduced into ecological environment during the...
Nanoparticles are finding more practical applications in various fields of human activity, including...
Nanomaterials are gaining large amounts of traction due to the enhancement of certain properties tha...
On a nanometric scale, noble metal particles have fascinating optical properties. They are dominated...
Nanoparticles (NPs) show promising applications in biomedicine, catalysis, and energy harvesting. Th...
Absolute extinction measurements on individual silver nanoparticles under illumination show a steady...
A new method is developed referred to as Gold Nanorod Optical Modeling Equations (GNOME) for determi...
Surface modifications of highly monodisperse citrate-stabilized gold nanoparticles (AuNPs) with size...
Noble metal nanoparticles possess interesting optical properties that make them suitable for potenti...
Metal nanoparticles (NPs) scatter and absorb light in precise, designable ways, making them agile ca...