The optical response of isolated holes in 20 nm thin gold is probed as a function of alkanethiol CH3(CH2)(x)SH (x is an element of 1-15) and protein adsorption using dark-field spectroscopy. We establish that the plasmon excitations of single and short-range ordered 60 nm holes exhibit similar E-field decay lengths delta approximate to 10-20 nm and that a single hole can be used to resolve the successive adsorption of a protein (biotin-BSA) and its interaction partner (neutravidin). The data confirm the localized character of the hole plasmon and demonstrate that its applicability for bio/chemosensing is similar to that of particle plasmons
The resonance conditions for excitation of propagating surface plasmons at planar metal/dielectric i...
The present work focuses on plasmonic properties of nanostructures to be used as optical biosensors....
A novel nanosized and addressable sensing platform based on membrane coated plasmonic particles for ...
Localized surface plasmon resonances (LSPR\u27s) in noblemetal nanostructures are sensitive to refra...
Localized surface plasmon resonances (LSPR's) in noble metal nanostructures are sensitive to refract...
Plasmonic nanohole arrays are widely used for optical label-free molecular detection. An important f...
Plasmonic nanohole arrays are widely used for optical label-free molecular detection. An important f...
Within life science, there is currently an intense search for novel techniques that enable efficient...
Within life science, there is currently an intense search for novel techniques that enable efficient...
The revelation of protein protein-interactions is one of the main preoccupations in the field of pro...
The optical properties of single nanoholes in optically thin (t = 20 nm) gold films on glass have be...
The resonance conditions for excitation of propagating surface plasmons at planar metal/dielectric i...
The resonance conditions for excitation of propagating surface plasmons at planar metal/dielectric i...
The optical properties of single nanoholes in optically thin (t) 20 nm) gold films on glass have bee...
The optical properties of single nanoholes in optically thin (t=20 nm) gold films on glass have been...
The resonance conditions for excitation of propagating surface plasmons at planar metal/dielectric i...
The present work focuses on plasmonic properties of nanostructures to be used as optical biosensors....
A novel nanosized and addressable sensing platform based on membrane coated plasmonic particles for ...
Localized surface plasmon resonances (LSPR\u27s) in noblemetal nanostructures are sensitive to refra...
Localized surface plasmon resonances (LSPR's) in noble metal nanostructures are sensitive to refract...
Plasmonic nanohole arrays are widely used for optical label-free molecular detection. An important f...
Plasmonic nanohole arrays are widely used for optical label-free molecular detection. An important f...
Within life science, there is currently an intense search for novel techniques that enable efficient...
Within life science, there is currently an intense search for novel techniques that enable efficient...
The revelation of protein protein-interactions is one of the main preoccupations in the field of pro...
The optical properties of single nanoholes in optically thin (t = 20 nm) gold films on glass have be...
The resonance conditions for excitation of propagating surface plasmons at planar metal/dielectric i...
The resonance conditions for excitation of propagating surface plasmons at planar metal/dielectric i...
The optical properties of single nanoholes in optically thin (t) 20 nm) gold films on glass have bee...
The optical properties of single nanoholes in optically thin (t=20 nm) gold films on glass have been...
The resonance conditions for excitation of propagating surface plasmons at planar metal/dielectric i...
The present work focuses on plasmonic properties of nanostructures to be used as optical biosensors....
A novel nanosized and addressable sensing platform based on membrane coated plasmonic particles for ...