International audienceAn innovative technique is proposed for the precise and scalable placement of 1D nanostructures in an affordable manner. This approach combines the dielectrophoresis phenomenon and capillary assembly to successfully align thousands of single nanowires at specific locations at the wafer. The nanowires are selectively trapped by taking advantage of the material-specific frequence dependence
We present a novel platform for the development and deployment of nanosensors in integrated systems....
One of the biggest limitations of conventional carbon nanotube device fabrication techniques is the ...
Silicon nanowire interconnects are dielectrophoretically assembled, reconfigured, and disassembled b...
International audienceAn innovative technique is proposed for the precise and scalable placement of ...
We demonstrate the ability to precisely control the alignment and placement of large numbers of InAs...
Nanowire (NW) assembly is currently of great interest, partly because NWs are considered as a fundam...
The integration of one-dimensional (1D) nanostructures of non-industry-standard semiconductors infun...
We report the large-area alignment of multi-segmented nanowires in nanoscale trenches facilitated by...
Directed-assembly of nanowires on the dielectrics-covered parallel electrode structure is capable of...
Flow-assisted dielectrophoresis (DEP) is an efficient self-assembly method for the controllable and ...
Nanowires constitute the potential building blocks for the emergence of new architectures in nanoele...
Placing nanowires at the predetermined locations on a substrate represents one of the significant hu...
Article of record as published may be found at http://dx.doi.org/10.1021/nn405627sWe report the larg...
We report here on applying electric fields and dielectric media to achieve controlled alignment of s...
Graduation date: 2010Work on individually constructed devices has demonstrated that nanowires (NWs) ...
We present a novel platform for the development and deployment of nanosensors in integrated systems....
One of the biggest limitations of conventional carbon nanotube device fabrication techniques is the ...
Silicon nanowire interconnects are dielectrophoretically assembled, reconfigured, and disassembled b...
International audienceAn innovative technique is proposed for the precise and scalable placement of ...
We demonstrate the ability to precisely control the alignment and placement of large numbers of InAs...
Nanowire (NW) assembly is currently of great interest, partly because NWs are considered as a fundam...
The integration of one-dimensional (1D) nanostructures of non-industry-standard semiconductors infun...
We report the large-area alignment of multi-segmented nanowires in nanoscale trenches facilitated by...
Directed-assembly of nanowires on the dielectrics-covered parallel electrode structure is capable of...
Flow-assisted dielectrophoresis (DEP) is an efficient self-assembly method for the controllable and ...
Nanowires constitute the potential building blocks for the emergence of new architectures in nanoele...
Placing nanowires at the predetermined locations on a substrate represents one of the significant hu...
Article of record as published may be found at http://dx.doi.org/10.1021/nn405627sWe report the larg...
We report here on applying electric fields and dielectric media to achieve controlled alignment of s...
Graduation date: 2010Work on individually constructed devices has demonstrated that nanowires (NWs) ...
We present a novel platform for the development and deployment of nanosensors in integrated systems....
One of the biggest limitations of conventional carbon nanotube device fabrication techniques is the ...
Silicon nanowire interconnects are dielectrophoretically assembled, reconfigured, and disassembled b...