Growth of vertically aligned carbon nanotube (CNT) forests is highly sensitive to the nature of the substrate. This constraint narrows the range of available materials to just a few oxide-based dielectrics and presents a major obstacle for applications. Using a suspended monolayer, we show here that graphene is an excellent conductive substrate for CNT forest growth. Furthermore, graphene is shown to intermediate growth on key substrates, such as Cu, Pt, and diamond, which had not previously been compatible with nanotube forest growth. We find that growth depends on the degree of crystallinity of graphene and is best on mono- or few-layer graphene. The synergistic effects of graphene are revealed by its endurance after CNT growth and low co...
Graphene has a planar atomic structure with high flexibility and might be used as ultrathin conducti...
Graphene and single-walled carbon nanotubes (SWNTs) have shown superior potential in electronics and...
We investigate the formation and stability of Fe nanoparticles on TiN and poly-crystalline PtSi film...
This project is a part of a research project to realise a combined Graphene and CNTs interconnect to...
arbon nanotubes (CNTs) grown di-rectly on bulk metal substrates15 used in several applications elimi...
Carbon nanotubes (CNTs) and graphene are potential candidates for future interconnect materials. CNT...
UnrestrictedGraphene and carbon nanotubes have outstanding electrical and thermal conductivity. Thes...
We fabricated a 3D sandwich hybrid material composed of graphene and vertically aligned carbon nanot...
A new way to simultaneously grow carbon nanotubes (CNTs) and ultrathin graphite on copper (Cu) foils...
Proper size, density, and activity of catalyst nanoparticles are the key prerequisites for the growt...
Graphene was grown directly on porous nickel films, followed by the growth of controlled lengths of ...
Carbon nanotubes and graphene have many interesting properties. To exploit the properties in applica...
We present a general catalyst design to synthesize ultrahigh density, aligned forests of carbon nano...
Since their discovery in 1991, carbon nanotubes have attracted much attention due to their unique el...
As the cylindrical sp(2)-bonded carbon allotrope, carbon nanotubes (CNTs) have been widely used to r...
Graphene has a planar atomic structure with high flexibility and might be used as ultrathin conducti...
Graphene and single-walled carbon nanotubes (SWNTs) have shown superior potential in electronics and...
We investigate the formation and stability of Fe nanoparticles on TiN and poly-crystalline PtSi film...
This project is a part of a research project to realise a combined Graphene and CNTs interconnect to...
arbon nanotubes (CNTs) grown di-rectly on bulk metal substrates15 used in several applications elimi...
Carbon nanotubes (CNTs) and graphene are potential candidates for future interconnect materials. CNT...
UnrestrictedGraphene and carbon nanotubes have outstanding electrical and thermal conductivity. Thes...
We fabricated a 3D sandwich hybrid material composed of graphene and vertically aligned carbon nanot...
A new way to simultaneously grow carbon nanotubes (CNTs) and ultrathin graphite on copper (Cu) foils...
Proper size, density, and activity of catalyst nanoparticles are the key prerequisites for the growt...
Graphene was grown directly on porous nickel films, followed by the growth of controlled lengths of ...
Carbon nanotubes and graphene have many interesting properties. To exploit the properties in applica...
We present a general catalyst design to synthesize ultrahigh density, aligned forests of carbon nano...
Since their discovery in 1991, carbon nanotubes have attracted much attention due to their unique el...
As the cylindrical sp(2)-bonded carbon allotrope, carbon nanotubes (CNTs) have been widely used to r...
Graphene has a planar atomic structure with high flexibility and might be used as ultrathin conducti...
Graphene and single-walled carbon nanotubes (SWNTs) have shown superior potential in electronics and...
We investigate the formation and stability of Fe nanoparticles on TiN and poly-crystalline PtSi film...