Graphene oxide (GO) multilayers were produced by the layer-by-layer technique after successive immersions of quartz slides into aqueous suspensions of cationic poly(diallyldimethyl ammonium chloride) (PDAC) and anionic GO. The adsorbed amount of GO within the multilayers measured ex situ by UV-vis spectroscopy was found to increase linearly with the number of PDAC-GO bilayers. UV-vis and Raman spectra confirmed the conversion of GO to its reduced form, namely reduced graphene oxide (RGO), when the multilayers were subjected to hot hydrazine. According to AFM images, multilayers are flat with GO sheets forming edge structures. Additionally, impedance spectroscopy provided information regarding the multilayer growth mechanism, which starts wi...
The use of graphene in conventional plasmonic devices was suggested by several theoretic research st...
Well-aligned graphene oxide (GO) scrolls are prepared through the controlled folding/scrolling of si...
Reduced graphene oxide (RGO) has proved to be a promising candidate in high-performance gas sensing ...
Graphene oxide (GO) multilayers were produced by the layer-by-layer technique after successive immer...
We demonstrate reduced graphene oxide as the active material for high-performance molecular sensors....
The electrical properties of reduced graphene oxide (rGO) have been previously shown to be very sens...
Graphene oxide (GO) and reduced graphene oxide (rGO) films were formed by ultrasonic spray coating m...
In the wide palette of chemoresistive sensing materials, hybrid nanocomposites have quickly gained ...
Graphene oxide films were formed using the ultrasonic spray coating method and studied with micro-Ra...
AbstractGraphene based chemiresistive vapour sensors were prepared using interdigital electrodes coa...
Graphene oxide (GO) sheets prepared by chemical exfoliation were spread at the air-water interface a...
In this work, we investigated the functionalization of reduced graphene oxide (rGO) with 2-(dodecen-...
This paper reports our findings on how to prepare a graphene oxide-based gas sensor for sensing fast...
In the manifold of materials for Volatile Organic Compound (VOC) sensing, graphene related materials...
Chemically reduced graphene oxide (RGO) has recently attracted growing interest in the area of chemi...
The use of graphene in conventional plasmonic devices was suggested by several theoretic research st...
Well-aligned graphene oxide (GO) scrolls are prepared through the controlled folding/scrolling of si...
Reduced graphene oxide (RGO) has proved to be a promising candidate in high-performance gas sensing ...
Graphene oxide (GO) multilayers were produced by the layer-by-layer technique after successive immer...
We demonstrate reduced graphene oxide as the active material for high-performance molecular sensors....
The electrical properties of reduced graphene oxide (rGO) have been previously shown to be very sens...
Graphene oxide (GO) and reduced graphene oxide (rGO) films were formed by ultrasonic spray coating m...
In the wide palette of chemoresistive sensing materials, hybrid nanocomposites have quickly gained ...
Graphene oxide films were formed using the ultrasonic spray coating method and studied with micro-Ra...
AbstractGraphene based chemiresistive vapour sensors were prepared using interdigital electrodes coa...
Graphene oxide (GO) sheets prepared by chemical exfoliation were spread at the air-water interface a...
In this work, we investigated the functionalization of reduced graphene oxide (rGO) with 2-(dodecen-...
This paper reports our findings on how to prepare a graphene oxide-based gas sensor for sensing fast...
In the manifold of materials for Volatile Organic Compound (VOC) sensing, graphene related materials...
Chemically reduced graphene oxide (RGO) has recently attracted growing interest in the area of chemi...
The use of graphene in conventional plasmonic devices was suggested by several theoretic research st...
Well-aligned graphene oxide (GO) scrolls are prepared through the controlled folding/scrolling of si...
Reduced graphene oxide (RGO) has proved to be a promising candidate in high-performance gas sensing ...