AbstractCheap ultrahigh sensitivity sensors find many applications, hence their development is highly desirable. Here, we report a novel amperometric gas sensor based on the system graphene–ionic liquid–graphite nanopowder that we constructed. Prepared device exhibits response of 90% towards 2ppm of NO2 in synthetic air and 40% of relative humidity. Short response time of 40 s and recovery time of less than one minute was observed. The variation of the saturation current with the concentration of the analysed gas shows a linear dependence in the range 1–5ppm with a slope for the calibration curve of 0.2μA/ppm. Our results thus show that graphite nanopowder can be efficiently used in sensing applications
Graphene based gas sensor has been a major trend in the field of scientific research for gas detecti...
Sensitive and selective detection of target gases is the ultimate goal for commercialization of grap...
We present a flexible room temperature NO2 gas sensor consisting of vertical carbon nanotubes (CNTs)...
AbstractCheap ultrahigh sensitivity sensors find many applications, hence their development is highl...
AbstractThe high sensitivity of graphene to the adsorption/desorption of gas molecule, is at the ver...
AbstractGas sensor operating in part-per billion (ppb) range is required for environmental monitorin...
9 páginas, 6 figuras color.Few-layered mesoporous graphene (FLMG) is employed as a sensing material...
We demonstrate proof-of-concept graphene (a) sensors for environmental monitoring of ultralow concen...
We report a highly sensitive NO2 gas sensor based on multi-layer graphene (MLG) films synthesized by...
We report about technology of fabrication and optimization of a gas sensor based on epitaxial graphe...
Gas sensor operating in part-per billion (ppb) range is required for environmental monitoring of nit...
Nitrogen dioxide (NO2) is a potential hazard to human health at low concentrations, below one part p...
Gas sensor operating in part-per billion (ppb) range is required for environmental monitoring of nit...
Graphene and its related materials have attracted much interest in sensing applications because of t...
Ultrasensitive gas sensor based on epitaxial graphene on SiC has been fabricated. The sensor exhibit...
Graphene based gas sensor has been a major trend in the field of scientific research for gas detecti...
Sensitive and selective detection of target gases is the ultimate goal for commercialization of grap...
We present a flexible room temperature NO2 gas sensor consisting of vertical carbon nanotubes (CNTs)...
AbstractCheap ultrahigh sensitivity sensors find many applications, hence their development is highl...
AbstractThe high sensitivity of graphene to the adsorption/desorption of gas molecule, is at the ver...
AbstractGas sensor operating in part-per billion (ppb) range is required for environmental monitorin...
9 páginas, 6 figuras color.Few-layered mesoporous graphene (FLMG) is employed as a sensing material...
We demonstrate proof-of-concept graphene (a) sensors for environmental monitoring of ultralow concen...
We report a highly sensitive NO2 gas sensor based on multi-layer graphene (MLG) films synthesized by...
We report about technology of fabrication and optimization of a gas sensor based on epitaxial graphe...
Gas sensor operating in part-per billion (ppb) range is required for environmental monitoring of nit...
Nitrogen dioxide (NO2) is a potential hazard to human health at low concentrations, below one part p...
Gas sensor operating in part-per billion (ppb) range is required for environmental monitoring of nit...
Graphene and its related materials have attracted much interest in sensing applications because of t...
Ultrasensitive gas sensor based on epitaxial graphene on SiC has been fabricated. The sensor exhibit...
Graphene based gas sensor has been a major trend in the field of scientific research for gas detecti...
Sensitive and selective detection of target gases is the ultimate goal for commercialization of grap...
We present a flexible room temperature NO2 gas sensor consisting of vertical carbon nanotubes (CNTs)...