We present a novel process methodology for the controlled cutting of nanotubes and other nanostructures to well-controlled lengths and sizes. The continuing increase in complexity of electronic devices, coupled with decreasing size of individual elements, are placing more stringent demands on the resolution and accuracy of fabrication patterns. The ability to fabricate on a nanometer scale guarantees a continuation in miniaturization of functional devices. Particularly interesting is the application of nanotubes ' chemical and electronic properties which vary with their dimensions and structure. One realization of this process includes the use of photolithography or electron beam lithography to place protective resist patterns over th...
\u3cp\u3eWhen designing a new nanostructure or microstructure, one can follow a processing-based man...
We precisely cut single-walled carbon nanotubes ( SWNTs) to create short nanotubes with controlled l...
Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpa...
Single-walled carbon nanotubes are efficiently cut to precise submicrometer lengths and very narrow ...
Single-walled carbon nanotubes are efficiently cut to precise submicrometer lengths and very narrow ...
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, ...
According to some embodiments, the present invention provides a method for attaining short carbon na...
We precisely cut single-walled carbon nanotubes (SWNTs) to create short nanotubes with controlled le...
Carbon nanotubes1, 2 might be usefully employed in nanometre-scale engineering and electronics. Elec...
A novel method has been developed for homogeneous dispersion of metal nanoparticles inside short car...
A general and well-controlled process used to fabricate uniform metal nanotube arrays via a multi-st...
When designing a new nanostructure or microstructure, one can follow a processing-based manufacturin...
This paper presents a novel automated manufacturing process for mass producing nano devices with sup...
This invention relates generally to cutting single-wall carbon nanotubes (SWNT). In one embodiment, ...
\u3cp\u3eWhen designing a new nanostructure or microstructure, one can follow a processing-based man...
We precisely cut single-walled carbon nanotubes ( SWNTs) to create short nanotubes with controlled l...
Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpa...
Single-walled carbon nanotubes are efficiently cut to precise submicrometer lengths and very narrow ...
Single-walled carbon nanotubes are efficiently cut to precise submicrometer lengths and very narrow ...
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, ...
According to some embodiments, the present invention provides a method for attaining short carbon na...
We precisely cut single-walled carbon nanotubes (SWNTs) to create short nanotubes with controlled le...
Carbon nanotubes1, 2 might be usefully employed in nanometre-scale engineering and electronics. Elec...
A novel method has been developed for homogeneous dispersion of metal nanoparticles inside short car...
A general and well-controlled process used to fabricate uniform metal nanotube arrays via a multi-st...
When designing a new nanostructure or microstructure, one can follow a processing-based manufacturin...
This paper presents a novel automated manufacturing process for mass producing nano devices with sup...
This invention relates generally to cutting single-wall carbon nanotubes (SWNT). In one embodiment, ...
\u3cp\u3eWhen designing a new nanostructure or microstructure, one can follow a processing-based man...
We precisely cut single-walled carbon nanotubes ( SWNTs) to create short nanotubes with controlled l...
Carbon nanotube (CNT) devices and electronics are achieving maturity and directly competing or surpa...