A composite prepared by grafting a conjugated polymer, poly(3-hexylthiophene) (P3HT), to the surface of graphene oxide was shown to result in a dual-fluorescent material with tunable photoluminescent properties. Capitalizing on these unique features, a new class of graphene-based sensors that enables the ratiometric fluorescence detection of amine-based pollutants was developed. Moreover, through a detailed spectroscopic study, the origin of the optical properties of the aforementioned composite was studied and was found to be due to electronic decoupling of the conjugated polymer from the GO. The methodology described herein effectively overcomes a long-standing challenge that has prevented graphene based composites from finding utility in...
A band gap tuning of environmental-friendly graphene quantum dot (GQD) becomes a keen interest for n...
Highly confined plasmon modes in nanostructured graphene can be used to detect tiny quantities of bi...
In the wide palette of chemoresistive sensing materials, hybrid nanocomposites have quickly gained ...
A composite prepared by grafting a conjugated polymer, poly(3-hexylthiophene) (P3HT), to the surface...
A composite prepared by grafting a conjugated polymer, poly(3- hexylthiophene) (P3HT), to the surfac...
We report the fabrication of a gas sensor with an oleylamine-modified graphene oxide (OA-GO)/poly(9-...
We have developed a new highly fluorescent graphene oxide (GO)/poly(vinyl alcohol) (PVA) hybrid (GO...
Fluorescence quenching is a valuable tool to study many macromolecular assemblies. It is well-known ...
Although the “turn-on” fluorescence-based detection approach has been widely used in diverse fields,...
Graphene-based nanocomposites are largely explored for the development of sensing devices due to the...
Fluorescence based on quantum confinement is a property restricted to the nanoscopic range. The inc...
Intrinsic fluorescence and versatile optical properties of Graphene Oxide (GO) in visible and near-i...
Abstract: Recently, an increasing number of organic compounds including polycyclic aromatic hydrocar...
Recently, graphene has gained much attention because of its unique optical, mechanical, electrical, ...
It has been found that two-dimensional materials, such as graphene, can be used as remarkable gas d...
A band gap tuning of environmental-friendly graphene quantum dot (GQD) becomes a keen interest for n...
Highly confined plasmon modes in nanostructured graphene can be used to detect tiny quantities of bi...
In the wide palette of chemoresistive sensing materials, hybrid nanocomposites have quickly gained ...
A composite prepared by grafting a conjugated polymer, poly(3-hexylthiophene) (P3HT), to the surface...
A composite prepared by grafting a conjugated polymer, poly(3- hexylthiophene) (P3HT), to the surfac...
We report the fabrication of a gas sensor with an oleylamine-modified graphene oxide (OA-GO)/poly(9-...
We have developed a new highly fluorescent graphene oxide (GO)/poly(vinyl alcohol) (PVA) hybrid (GO...
Fluorescence quenching is a valuable tool to study many macromolecular assemblies. It is well-known ...
Although the “turn-on” fluorescence-based detection approach has been widely used in diverse fields,...
Graphene-based nanocomposites are largely explored for the development of sensing devices due to the...
Fluorescence based on quantum confinement is a property restricted to the nanoscopic range. The inc...
Intrinsic fluorescence and versatile optical properties of Graphene Oxide (GO) in visible and near-i...
Abstract: Recently, an increasing number of organic compounds including polycyclic aromatic hydrocar...
Recently, graphene has gained much attention because of its unique optical, mechanical, electrical, ...
It has been found that two-dimensional materials, such as graphene, can be used as remarkable gas d...
A band gap tuning of environmental-friendly graphene quantum dot (GQD) becomes a keen interest for n...
Highly confined plasmon modes in nanostructured graphene can be used to detect tiny quantities of bi...
In the wide palette of chemoresistive sensing materials, hybrid nanocomposites have quickly gained ...