Infrared gas sensors have been proven promising for broad applications in Internet of Things and Industrial Internet of Things. However, the lack of miniaturized light sources with good compatibility and tunable spectral features hinders their widespread utilization. Herein, a strategy is proposed to increase the radiated power from microelectromechanical-based thermal emitters by coating with graphene oxide (GO). The radiation can be substantially enhanced, which partially stems from the high emissivity of GO coating demonstrated by spectroscopic methods. Moreover, the sp2 structure within GO may induce plasmons and thus couple with photons to produce blackbody radiation and/or new thermal emission sources. As a proof-of-concept demonstrat...
Mid-infrared light is used for thermal imaging, relying on thermal radiation, and chemical analysis,...
This study characterizes the effects of incident infrared (IR) radiation on the electrical conductiv...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...
Infrared gas sensors have been proven promising for broad applications in Internet of Things and Ind...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Nitrogen dioxide (NO2) is a potential hazard to human health at low concentrations, below one part p...
Due to the unique optical properties, graphene can effectively be used for the detection of infrared...
Owing to the excellent sensitivity to gases, metal-oxide semiconductors (MOS) are widely used as mat...
Cost-efficient and easily integrable broadband mid-infrared (mid-IR) sources would significantly enh...
Reduced graphene oxide (rGO) was investigated as a material for use in chemiresistive gas sensors. T...
Highly confined plasmon modes in nanostructured graphene can be used to detect tiny quantities of bi...
Reduced graphene oxide (rGO) has found tremendous application due to its versatile and tunable prope...
In this study, we investigated means of performance enhancement in sensors based on epitaxial graphe...
Graphene oxide (GO) was synthesized by a hydrothermal method using glucose solution as the sole reag...
Journal ArticleWe have investigated the spatial and spectral characteristics of mid-infrared thermal...
Mid-infrared light is used for thermal imaging, relying on thermal radiation, and chemical analysis,...
This study characterizes the effects of incident infrared (IR) radiation on the electrical conductiv...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...
Infrared gas sensors have been proven promising for broad applications in Internet of Things and Ind...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Nitrogen dioxide (NO2) is a potential hazard to human health at low concentrations, below one part p...
Due to the unique optical properties, graphene can effectively be used for the detection of infrared...
Owing to the excellent sensitivity to gases, metal-oxide semiconductors (MOS) are widely used as mat...
Cost-efficient and easily integrable broadband mid-infrared (mid-IR) sources would significantly enh...
Reduced graphene oxide (rGO) was investigated as a material for use in chemiresistive gas sensors. T...
Highly confined plasmon modes in nanostructured graphene can be used to detect tiny quantities of bi...
Reduced graphene oxide (rGO) has found tremendous application due to its versatile and tunable prope...
In this study, we investigated means of performance enhancement in sensors based on epitaxial graphe...
Graphene oxide (GO) was synthesized by a hydrothermal method using glucose solution as the sole reag...
Journal ArticleWe have investigated the spatial and spectral characteristics of mid-infrared thermal...
Mid-infrared light is used for thermal imaging, relying on thermal radiation, and chemical analysis,...
This study characterizes the effects of incident infrared (IR) radiation on the electrical conductiv...
Graphene is worth evaluating for chemical sensing and biosensing due to its outstanding physical and...