Carbon nanofluidic structures made of carbon nanotubes or graphene/graphene oxide have shown great promise in energy and environment applications due to the newly discovered fast and selective mass transport. However, they have yet to be utilized in nanofluidic devices for lab-on-a-chip applications because of great challenges in their fabrication and integration. Herein we report the fabrication of two-dimensional planar graphene nanochannel devices and the study of ion transport inside a graphene nanochannel array. A MEMS fabrication process that includes controlled nanochannel etching, graphene wet transfer, and vacuum anodic bonding is developed to fabricate graphene nanochannels where graphene conformally coats the channel surfaces. We...
Furthering the promise of graphene-based planar nanofluidic devices as flexible, robust, low cost, a...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Furthering the promise of graphene-based planar nanofluidic devices as flexible, robust, low cost, a...
Enhanced mass transport in carbon-based nanoscale conduits (e.g. carbon nanotubes, graphene nanochan...
In an experiment based on electroosmotic ion transport, 3.6 nm high graphene nanochannels with a cle...
Recent developments in nanotechnology including fabrication, measurement and characterization have e...
Graphene is a single layer of carbon atoms. It is the ultimate surface material that can divide spac...
Electrolytes confined in nanochannels with characteristic dimensions comparable to the Debye length ...
Understanding and controlling water or ion transport in nanochannels plays an important role in furt...
An examination of the behaviour of ions in graphene oxide membranes reveals the roles that surface c...
Superfast water transport discovered in graphitic nanoconduits, including carbon nanotubes and graph...
The transport of ionic species in nano-fluidic channels has recently attracted tremendous interest i...
Graphene membrane as a staggered multilayer structure was demonstrated to be a promising filter memb...
Control and understanding of the flow of fluids at nanoscales is of great significance to biology, s...
Structurally symmetric two-dimensional multilayered graphene oxide films, which facilitate ion trans...
Furthering the promise of graphene-based planar nanofluidic devices as flexible, robust, low cost, a...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Furthering the promise of graphene-based planar nanofluidic devices as flexible, robust, low cost, a...
Enhanced mass transport in carbon-based nanoscale conduits (e.g. carbon nanotubes, graphene nanochan...
In an experiment based on electroosmotic ion transport, 3.6 nm high graphene nanochannels with a cle...
Recent developments in nanotechnology including fabrication, measurement and characterization have e...
Graphene is a single layer of carbon atoms. It is the ultimate surface material that can divide spac...
Electrolytes confined in nanochannels with characteristic dimensions comparable to the Debye length ...
Understanding and controlling water or ion transport in nanochannels plays an important role in furt...
An examination of the behaviour of ions in graphene oxide membranes reveals the roles that surface c...
Superfast water transport discovered in graphitic nanoconduits, including carbon nanotubes and graph...
The transport of ionic species in nano-fluidic channels has recently attracted tremendous interest i...
Graphene membrane as a staggered multilayer structure was demonstrated to be a promising filter memb...
Control and understanding of the flow of fluids at nanoscales is of great significance to biology, s...
Structurally symmetric two-dimensional multilayered graphene oxide films, which facilitate ion trans...
Furthering the promise of graphene-based planar nanofluidic devices as flexible, robust, low cost, a...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Furthering the promise of graphene-based planar nanofluidic devices as flexible, robust, low cost, a...