Single-walled carbon nanotubes are efficiently cut to precise submicrometer lengths and very narrow length distributions. Chemical functional groups are placed selectively only at the ends without the nanotube walls being modified or damaged. The new methodology includes lithography to place protective photoresist patterns over the nanotubes and reactive ion etching to remove the unprotected nanostructure. This approach enables critical dimensional and chemical control for integrated nanodevice manufacturing based on chemical self-assembly under ambient conditions
Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpa...
A key impediment to the implementation of a nanoelectronics technology based on single wall carbon n...
With the ubiquitous demand for speed and performance in the electronics industry, integrated circuit...
Single-walled carbon nanotubes are efficiently cut to precise submicrometer lengths and very narrow ...
We present a novel process methodology for the controlled cutting of nanotubes and other nanostructu...
We precisely cut single-walled carbon nanotubes (SWNTs) to create short nanotubes with controlled le...
We precisely cut single-walled carbon nanotubes ( SWNTs) to create short nanotubes with controlled l...
This invention relates generally to cutting single-wall carbon nanotubes (SWNT). In one embodiment, ...
This invention relates generally to cutting single-wall carbon nanotubes (SWNT). In one embodiment, ...
This invention relates generally to cutting single-wall carbon nanotubes (SWNT). In one embodiment, ...
A fully controllable process for the fabrication of carbon nanotube assemblies is presented on the b...
The present invention is directed to the creation of macroscopic materials and objects comprising al...
We present a universal lithographic methodology for creating single molecule devices based on single...
A key impediment to the implementation of a nanoelectronics technology based on single wall carbon n...
Learning how to separate, purify and manipulate single wall carbon nanotubes (SWNTs) presents a uniq...
Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpa...
A key impediment to the implementation of a nanoelectronics technology based on single wall carbon n...
With the ubiquitous demand for speed and performance in the electronics industry, integrated circuit...
Single-walled carbon nanotubes are efficiently cut to precise submicrometer lengths and very narrow ...
We present a novel process methodology for the controlled cutting of nanotubes and other nanostructu...
We precisely cut single-walled carbon nanotubes (SWNTs) to create short nanotubes with controlled le...
We precisely cut single-walled carbon nanotubes ( SWNTs) to create short nanotubes with controlled l...
This invention relates generally to cutting single-wall carbon nanotubes (SWNT). In one embodiment, ...
This invention relates generally to cutting single-wall carbon nanotubes (SWNT). In one embodiment, ...
This invention relates generally to cutting single-wall carbon nanotubes (SWNT). In one embodiment, ...
A fully controllable process for the fabrication of carbon nanotube assemblies is presented on the b...
The present invention is directed to the creation of macroscopic materials and objects comprising al...
We present a universal lithographic methodology for creating single molecule devices based on single...
A key impediment to the implementation of a nanoelectronics technology based on single wall carbon n...
Learning how to separate, purify and manipulate single wall carbon nanotubes (SWNTs) presents a uniq...
Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpa...
A key impediment to the implementation of a nanoelectronics technology based on single wall carbon n...
With the ubiquitous demand for speed and performance in the electronics industry, integrated circuit...