The distribution of oxygen functional groups on the surface of graphene oxide (GO) has been investigated experimentally and theoretically. Atomic layer deposition of TiOx was used to clarify the location of oxygen functional groups. We found that the oxygen functional groups are distributed in the form of islands, which is confirmed using aberration corrected transmission electron microscopy and X-ray photoelectron spectroscopy. The density functional studies further support these findings. The evolution of oxygen functional groups was also investigated with GO treated at 150, 200, 250, and 300 degrees C. In addition, the reduction of epoxide and hydroxyl groups on the GO surface at different temperatures has been discussed in connection wi...
The type and distribution of oxygen functional groups in graphene oxide and reduced graphene oxide...
Controllable synthesis of graphite oxide (GO) for targeted surface properties is of great importance...
Graphene oxide (GO) is a material of both fundamental and applied interest. Elucidating this complex...
The local atomic configuration of graphene oxide (GO) was investigated by identifying the different ...
Control over oxygen functionalities is important for the realization of Graphene Oxide (GO) based ap...
The most widely used method for the synthesis of graphene in large scale is through the thermal exfo...
The initial oxidation stages of perfect and defective graphitic surfaces exposed to atomic oxygen ha...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
In the present study we have evaluated the contribution of particular oxygen functional groups in th...
In this paper, we have comprehensively reviewed the results of recent studies on novel unique materi...
The atomic behavior of epoxy groups on a graphene oxide sheet was observed during high thermal heat ...
Density functional theory calculations are carried out to model the structure and interpret recent X...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
In the last year, the investigation of two-dimensional materials as graphene oxide is a fundamental ...
The type and distribution of oxygen functional groups in graphene oxide and reduced graphene oxide...
Controllable synthesis of graphite oxide (GO) for targeted surface properties is of great importance...
Graphene oxide (GO) is a material of both fundamental and applied interest. Elucidating this complex...
The local atomic configuration of graphene oxide (GO) was investigated by identifying the different ...
Control over oxygen functionalities is important for the realization of Graphene Oxide (GO) based ap...
The most widely used method for the synthesis of graphene in large scale is through the thermal exfo...
The initial oxidation stages of perfect and defective graphitic surfaces exposed to atomic oxygen ha...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
In the present study we have evaluated the contribution of particular oxygen functional groups in th...
In this paper, we have comprehensively reviewed the results of recent studies on novel unique materi...
The atomic behavior of epoxy groups on a graphene oxide sheet was observed during high thermal heat ...
Density functional theory calculations are carried out to model the structure and interpret recent X...
Graphene oxide (GO) is a versatile 2D material whose properties can be tuned by changing the type an...
In the last year, the investigation of two-dimensional materials as graphene oxide is a fundamental ...
The type and distribution of oxygen functional groups in graphene oxide and reduced graphene oxide...
Controllable synthesis of graphite oxide (GO) for targeted surface properties is of great importance...
Graphene oxide (GO) is a material of both fundamental and applied interest. Elucidating this complex...