Graphene oxide is one of the most studied nanomaterials owing to its huge application potential in many fields, including biomedicine, sensing, drug delivery, optical and optoelectronic technologies. However, a detailed description of the chemical composition and the extent of oxidation in graphene oxide remains a key challenge affecting its applicability and further development of new applications. Here, we report direct monitoring of the chemical oxidation of an individual graphene flake during ultraviolet/ozone treatment through in situ atomic force microscopy based on dynamic force mapping. The results showed that graphene oxidation expanded from the graphene edges to the entire graphene surface. The interaction force mapping results co...
Functionalized graphene is a versatile material that has well-known physical and chemical properties...
Graphene oxide is a complex material whose synthesis is still incompletely understood. To study the ...
In this paper, we have comprehensively reviewed the results of recent studies on novel unique materi...
Further details regarding the measurement, UV/ozone treatment, adhesion measurement, graphene height...
We report continuous monitoring of heterogeneously distributed oxygenated functionalities on the ent...
Control over oxygen functionalities is important for the realization of Graphene Oxide (GO) based ap...
Exfoliated oxidized graphene (OG) sheets, suspended in an aqueous solution, were deposited on freshl...
Graphene coatings have been shown to protect the underlying material from oxidation when exposed to ...
Using in-situ Kelvin probe force microscopy (KPFM) to measure surface potential, we investigated the...
University of Minnesota Ph.D. dissertation. September 2015. Major: Chemical Engineering. Advisor: Ch...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Graphene oxide is known to exhibit many interesting properties, ranging from inherent fluorescence t...
Ultraviolet-ozone (UVO) and oxygen plasma are widely used to modify the surface of materials because...
In order to investigate the process of oxidizing graphene, the chemical and electronic states have b...
We demonstrate the local oxidation nanopatterning of graphene films by an atomic force microscope. T...
Functionalized graphene is a versatile material that has well-known physical and chemical properties...
Graphene oxide is a complex material whose synthesis is still incompletely understood. To study the ...
In this paper, we have comprehensively reviewed the results of recent studies on novel unique materi...
Further details regarding the measurement, UV/ozone treatment, adhesion measurement, graphene height...
We report continuous monitoring of heterogeneously distributed oxygenated functionalities on the ent...
Control over oxygen functionalities is important for the realization of Graphene Oxide (GO) based ap...
Exfoliated oxidized graphene (OG) sheets, suspended in an aqueous solution, were deposited on freshl...
Graphene coatings have been shown to protect the underlying material from oxidation when exposed to ...
Using in-situ Kelvin probe force microscopy (KPFM) to measure surface potential, we investigated the...
University of Minnesota Ph.D. dissertation. September 2015. Major: Chemical Engineering. Advisor: Ch...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Graphene oxide is known to exhibit many interesting properties, ranging from inherent fluorescence t...
Ultraviolet-ozone (UVO) and oxygen plasma are widely used to modify the surface of materials because...
In order to investigate the process of oxidizing graphene, the chemical and electronic states have b...
We demonstrate the local oxidation nanopatterning of graphene films by an atomic force microscope. T...
Functionalized graphene is a versatile material that has well-known physical and chemical properties...
Graphene oxide is a complex material whose synthesis is still incompletely understood. To study the ...
In this paper, we have comprehensively reviewed the results of recent studies on novel unique materi...