Liquid-phase transfer of graphene oxide (GO) and reduced graphene oxide (RGO) monolayers is investigated from the perspective of the mechanical properties of these films. Monolayers are assembled in a Langmuir–Blodgett trough, and oscillatory barrier measurements are used to characterize the resulting compressive and shear moduli as a function of surface pressure. GO monolayers are shown to develop a significant shear modulus (10–25 mN/m) at relevant surface pressures while RGO monolayers do not. The existence of a shear modulus indicates that GO is acting as a two-dimensional solid driven by strong interaction between the individual GO sheets. The absence of such behavior in RGO is attributed to the decrease in oxygen moieties on the sheet...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...
Reproducible dry and wet transfer techniques were developed to improve the transfer of large-area mo...
Univocal conclusions around the wettability of graphene exposed to environmental conditions remain e...
Liquid-phase transfer of graphene oxide (GO) and reduced graphene oxide (RGO) monolayers is investig...
The hydrophilic nature of graphene oxide sheets can be tailored by varying the carbon to oxygen rati...
The hydrophilic nature of graphene oxide sheets can be tailored by varying the carbon to oxygen rati...
A 'modified' Langmuir-Blodgett (MLB) technique has been developed as a simple, low cost, energy effi...
Graphene oxide sheets have been shown to be a viable precursor for graphene in high-tech application...
Graphene oxide (GO) sheets were transferred by Langmuir-Blodgett technique on Si and SiO2/Si substra...
Control of a two-dimensional (2D) structure of assembled graphene oxide (GO) sheets is highly desira...
The mechanical behavior of graphene oxide is length scale dependent: orders of magnitude different b...
textThe thermomechanical properties of monolayer graphene and the interfacial interactions between g...
textThe thermomechanical properties of monolayer graphene and the interfacial interactions between g...
The hydration of graphene oxide (GO) membranes is the key to understand their remarkable selectivity...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...
Reproducible dry and wet transfer techniques were developed to improve the transfer of large-area mo...
Univocal conclusions around the wettability of graphene exposed to environmental conditions remain e...
Liquid-phase transfer of graphene oxide (GO) and reduced graphene oxide (RGO) monolayers is investig...
The hydrophilic nature of graphene oxide sheets can be tailored by varying the carbon to oxygen rati...
The hydrophilic nature of graphene oxide sheets can be tailored by varying the carbon to oxygen rati...
A 'modified' Langmuir-Blodgett (MLB) technique has been developed as a simple, low cost, energy effi...
Graphene oxide sheets have been shown to be a viable precursor for graphene in high-tech application...
Graphene oxide (GO) sheets were transferred by Langmuir-Blodgett technique on Si and SiO2/Si substra...
Control of a two-dimensional (2D) structure of assembled graphene oxide (GO) sheets is highly desira...
The mechanical behavior of graphene oxide is length scale dependent: orders of magnitude different b...
textThe thermomechanical properties of monolayer graphene and the interfacial interactions between g...
textThe thermomechanical properties of monolayer graphene and the interfacial interactions between g...
The hydration of graphene oxide (GO) membranes is the key to understand their remarkable selectivity...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...
Single or few layer graphene can be considered an exciting pseudo-two-dimensional molecular material...
Reproducible dry and wet transfer techniques were developed to improve the transfer of large-area mo...
Univocal conclusions around the wettability of graphene exposed to environmental conditions remain e...