Surface-enhanced Raman spectroscopy (SERS) improves the scope and power of Raman spectroscopy by taking advantage of plasmonic nanostructures, which have the potential to enhance Raman signal strength by several orders of magnitude, which can allow for the detection of analyte molecules. The dataset presented provides results of a computational study that used a finite element method (FEM) to model gold nanowires on a silicon dioxide substrate. The survey calculated the surface average of optical surface enhancement due to plasmonic effects across the entire model and studied various geometric parameters regarding the width of the nanowires, spacing between the nanowires, and thickness of the silicon dioxide substrate. From this data, enhan...
Controlling the location and the distribution of hot spots is a crucial aspect in the fabrication of...
In recent years there has been an increasing interest in analysis and identification of complex mole...
The interaction between plasmonic nanoparticle and substrate is of utmost importance for optimal des...
Surface-enhanced Raman spectroscopy (SERS) improves the scope and power of Raman spectroscopy by tak...
This work studies the effect of a plasmonic array structure coupled with thin film oxide substrate l...
Over the past four decades, the development of advanced techniques for fabricating metallic nanostru...
This work investigates a new design for a plasmonic SERS biosensor via computational electromagnetic...
In this dissertation, a new top-down nanofabrication echnology is presented to realize large area me...
The method of realizing nanostructures using porous alumina templates has attracted interest due to ...
We reveal nanoscale morphological changes on the surface of a silver nanowire (AgNW) in the conventi...
We present computational studies of quasi three-dimensional nanowell (NW) and nanopost (NP) plasmoni...
The optimization of nanostructures for a specific application is a rather complex task, often akin t...
Controlling the location and the distribution of hot spots is a crucial aspect in the fabrication of...
Surface Enhanced Raman Spectroscopy (SERS) is a surface-sensitive technique based on plasmon resonan...
In this paper we describe the fabrication of a periodic, two-dimensional arrangement of gold square ...
Controlling the location and the distribution of hot spots is a crucial aspect in the fabrication of...
In recent years there has been an increasing interest in analysis and identification of complex mole...
The interaction between plasmonic nanoparticle and substrate is of utmost importance for optimal des...
Surface-enhanced Raman spectroscopy (SERS) improves the scope and power of Raman spectroscopy by tak...
This work studies the effect of a plasmonic array structure coupled with thin film oxide substrate l...
Over the past four decades, the development of advanced techniques for fabricating metallic nanostru...
This work investigates a new design for a plasmonic SERS biosensor via computational electromagnetic...
In this dissertation, a new top-down nanofabrication echnology is presented to realize large area me...
The method of realizing nanostructures using porous alumina templates has attracted interest due to ...
We reveal nanoscale morphological changes on the surface of a silver nanowire (AgNW) in the conventi...
We present computational studies of quasi three-dimensional nanowell (NW) and nanopost (NP) plasmoni...
The optimization of nanostructures for a specific application is a rather complex task, often akin t...
Controlling the location and the distribution of hot spots is a crucial aspect in the fabrication of...
Surface Enhanced Raman Spectroscopy (SERS) is a surface-sensitive technique based on plasmon resonan...
In this paper we describe the fabrication of a periodic, two-dimensional arrangement of gold square ...
Controlling the location and the distribution of hot spots is a crucial aspect in the fabrication of...
In recent years there has been an increasing interest in analysis and identification of complex mole...
The interaction between plasmonic nanoparticle and substrate is of utmost importance for optimal des...