Environmental control on graphene is becoming increasingly necessary to study fundamental processes and to achieve graphene-based technological developments. Here, we designed dynamic actuation on split graphene fluid-environments by supporting graphene sheets on mesoporous thin films (air up - nanopore-confined fluid down). This approach allows transporting species and performing nanochemistry at specific sites under the graphene membrane. We also show distinctive behavior affecting graphene permeability linked to the driving force of the involved water-nanopore interplay processes. This novel precise control of graphene environment offers possibilities for further graphene-based technological developments, such as sensor and actuator tool...
Graphitic nanoscale allotropes such as graphene and carbon nanotubes have inspired science and engin...
Presented to the 12th Annual Symposium on Graduate Research and Scholarly Projects (GRASP) held at ...
The behavior of water confined at the nanoscale plays a fundamental role in biological processes and...
Several studies have demonstrated interest in creating surfaces with improved water interaction and ...
Click on the DOI link to access the article (may not be free).Fundamental understanding of water con...
Membrane separation applications such as water desalination and carbon capture require high permeanc...
Holey-graphene (HG) is a particular form of nanoporous graphene consisting of a vertically separated...
Hydrodynamics at the nanoscale involves both fundamental study and application of fluid and mass tra...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
The behavior of water under confinement is of utmost importance for the field of electrocatalysis, n...
Water dynamics in frictionless carbon nanotubes and across ultrathin graphene nanopores have been ex...
Graphitic nanoscale allotropes such as graphene and carbon nanotubes have inspired science and engin...
Presented to the 12th Annual Symposium on Graduate Research and Scholarly Projects (GRASP) held at ...
The behavior of water confined at the nanoscale plays a fundamental role in biological processes and...
Several studies have demonstrated interest in creating surfaces with improved water interaction and ...
Click on the DOI link to access the article (may not be free).Fundamental understanding of water con...
Membrane separation applications such as water desalination and carbon capture require high permeanc...
Holey-graphene (HG) is a particular form of nanoporous graphene consisting of a vertically separated...
Hydrodynamics at the nanoscale involves both fundamental study and application of fluid and mass tra...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
Advances in fabrication, measurement and characterization have led to intense research in the area o...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
We use atomic force microscopy to in situ investigate the dynamic behavior of confined water at the ...
The behavior of water under confinement is of utmost importance for the field of electrocatalysis, n...
Water dynamics in frictionless carbon nanotubes and across ultrathin graphene nanopores have been ex...
Graphitic nanoscale allotropes such as graphene and carbon nanotubes have inspired science and engin...
Presented to the 12th Annual Symposium on Graduate Research and Scholarly Projects (GRASP) held at ...
The behavior of water confined at the nanoscale plays a fundamental role in biological processes and...