An infrared refractive index sensor based on plasmonic perfect absorbers for glucose concentration sensing is experimentally demonstrated. Utilizing substantial absorption contrast between a perfect absorber (~98% at normal incidence) and a non-perfect absorber upon the refractive index change, a maximum value of figure of merit (FOM*) about 55 and a bulk wavelength sensitivity about 590 nm/RIU are achieved. The demonstrated sensing platform provides great potential in improving the performance of plasmonic refractive index sensors and developing future surface enhanced infrared spectroscopy. © 2014 Optical Society of America
The detection and quantification of glucose concentrations in human blood or in the ocular fluid gai...
Plasmonic perfect absorbers have a large potential for biomolecular sensing applications such as ref...
The article reports the numerical analysis of refractive index sensor using dual core photonic cryst...
In this paper, a new plasmonic absorbing metasurface sensor has been proposed to determine glucose c...
We propose a nanoring array structure backed by a metal mirror to achieve perfect infrared absorber ...
A plasmonic perfect absorber (PA) utilizes high absorption of incident radiation and near-field enha...
We propose a nanoring array structure backed by a metal mirror to achieve perfect infrared absorber ...
In this paper, we determine the optical refractive indices of different molarities of glucose using ...
This work proposes a sensor that utilizes a transmission scheme for measuring glucose aqueous soluti...
In this article, a novel surface plasmon polariton-based plasmonic refractive index sensor is propos...
We present the plasmonic fiber based optical glucometer. A thin gold layer is coated on clad-free co...
Booksh, KarlMolecularly imprinted hydrogel membranes were developed and evaluated for detection of ...
A Surface Plasmon Resonance (SPR) biosensor that operates deep into the infrared (3-11 μm wavelength...
Developing a simple and convenient approach for glucose sensing is crucially important in disease di...
Plasmonic perfect absorbers have found a wide range of applications in imaging, sensing, and light h...
The detection and quantification of glucose concentrations in human blood or in the ocular fluid gai...
Plasmonic perfect absorbers have a large potential for biomolecular sensing applications such as ref...
The article reports the numerical analysis of refractive index sensor using dual core photonic cryst...
In this paper, a new plasmonic absorbing metasurface sensor has been proposed to determine glucose c...
We propose a nanoring array structure backed by a metal mirror to achieve perfect infrared absorber ...
A plasmonic perfect absorber (PA) utilizes high absorption of incident radiation and near-field enha...
We propose a nanoring array structure backed by a metal mirror to achieve perfect infrared absorber ...
In this paper, we determine the optical refractive indices of different molarities of glucose using ...
This work proposes a sensor that utilizes a transmission scheme for measuring glucose aqueous soluti...
In this article, a novel surface plasmon polariton-based plasmonic refractive index sensor is propos...
We present the plasmonic fiber based optical glucometer. A thin gold layer is coated on clad-free co...
Booksh, KarlMolecularly imprinted hydrogel membranes were developed and evaluated for detection of ...
A Surface Plasmon Resonance (SPR) biosensor that operates deep into the infrared (3-11 μm wavelength...
Developing a simple and convenient approach for glucose sensing is crucially important in disease di...
Plasmonic perfect absorbers have found a wide range of applications in imaging, sensing, and light h...
The detection and quantification of glucose concentrations in human blood or in the ocular fluid gai...
Plasmonic perfect absorbers have a large potential for biomolecular sensing applications such as ref...
The article reports the numerical analysis of refractive index sensor using dual core photonic cryst...