The special electronic, optical, thermal, and mechanical properties of graphene resulting from its 2D nature, as well as the ease of functionalizing it through a simple acid treatment, make graphene an ideal building block for the development of new hybrid nanostructures with well-defined dimensions and behavior. Such hybrids have great potential as active materials in applications such as gas storage, gas/liquid separation, photocatalysis, bioimaging, optoelectronics, and nanosensing. In this study, luminescent carbon dots (C-dots) were sandwiched between oxidized graphene sheets to form novel hybrid multilayer films. Our thin-film preparation approach combines self-assembly with the Langmuir-Schaefer deposition and uses graphene oxide nan...
While the successful fabrication and characterization of the inherently two-dimensional graphene has...
Quantum dots (QDs) and graphene are both promising materials for the development of new-generation o...
Graphene as a new material is in the spotlight due to its extraordinary properties and wide range of...
The special electronic, optical, thermal, and mechanical properties of graphene resulting from its 2...
The scientific and technological potential of graphene's includes the development of light, open 3D ...
Much of the research effort on graphene focuses on its use as a building block for the development o...
Low-dimensional assemblies, where order and organization follow supramolecular principles, have show...
Multiple-color-emissive graphene quantum dots (GQDs) have great potential in diverse applications su...
We developed a simple, versatile method of integrating hybrid thin films of reduced graphene oxide (...
We present technique of obtaining complex hybrid structures combining the multi-walled carbon nanotu...
In recent years, increasing interest has been devoted to synthesizing graphene–semiconductor nanocom...
Carbon-based nanomaterials, such as carbon dots (CDs) and graphene (Gr), feature outstanding optical...
We report the surface functionalization of graphene films grown by chemical vapor deposition and fab...
The integration of various low dimensional materials into large area, scalable, heterostructures is ...
This dissertation focuses on investigating the synthesis of graphene and its hybrid nanostructures b...
While the successful fabrication and characterization of the inherently two-dimensional graphene has...
Quantum dots (QDs) and graphene are both promising materials for the development of new-generation o...
Graphene as a new material is in the spotlight due to its extraordinary properties and wide range of...
The special electronic, optical, thermal, and mechanical properties of graphene resulting from its 2...
The scientific and technological potential of graphene's includes the development of light, open 3D ...
Much of the research effort on graphene focuses on its use as a building block for the development o...
Low-dimensional assemblies, where order and organization follow supramolecular principles, have show...
Multiple-color-emissive graphene quantum dots (GQDs) have great potential in diverse applications su...
We developed a simple, versatile method of integrating hybrid thin films of reduced graphene oxide (...
We present technique of obtaining complex hybrid structures combining the multi-walled carbon nanotu...
In recent years, increasing interest has been devoted to synthesizing graphene–semiconductor nanocom...
Carbon-based nanomaterials, such as carbon dots (CDs) and graphene (Gr), feature outstanding optical...
We report the surface functionalization of graphene films grown by chemical vapor deposition and fab...
The integration of various low dimensional materials into large area, scalable, heterostructures is ...
This dissertation focuses on investigating the synthesis of graphene and its hybrid nanostructures b...
While the successful fabrication and characterization of the inherently two-dimensional graphene has...
Quantum dots (QDs) and graphene are both promising materials for the development of new-generation o...
Graphene as a new material is in the spotlight due to its extraordinary properties and wide range of...