The conductivity of carbon nanotube thin films is mainly determined by carbon nanotube junctions, the resistance of which can be reduced by several different methods. We investigate electronic transport through carbon nanotube junctions in a four-terminal configuration, where two metallic single-wall carbon nanotubes are linked by a group 6 transition metal atom. The transport calculations are based on the Green’s function method combined with the density-functional theory. The transition metal atom is found to enhance the transport through the junction near the Fermi level. However, the size of the nanotube affects the improvement in the conductivity. The enhancement is related to the hybridization of chromium and carbon atom orbitals, whi...
We use density functional theory to study the effect of molecular adsorbates on the conductance of m...
Carbon nanotubes (CNT) have a very large application potential in the rapid developing field of mole...
Carbon nanotubes have been regarded as ideal building blocks for nanoelectronics and multifunctional...
The conductivity of carbon nanotube thin films is mainly determined by carbon nanotube junctions, th...
Funding Information: We acknowledge Business Finland for funding (Grant No. 3767/31/2019) and Finnis...
Funding Information: We acknowledge Business Finland for funding (grant no. 3767/31/2019) and Finnis...
Carbon nanotube (CNT) films have excellent conductivity and suitable flexibility for chemical sensin...
Carbon nanotube (CNT) films have excellent conductivity and suitable flexibility for chemical sensin...
We address the issue of the low electrical conductivity observed in carbon nanotube networks using f...
The authors have studied the electronic structure and transport properties of hybrid nanowires made ...
Due to the exceptional strength, stiffness and excellent electrical and thermal properties, carbon n...
Cataloged from PDF version of article.Our first-principles study of the contact between a semiconduc...
Fullerene functionalized carbon nanotubes—NanoBuds—form a novel class of hybrid carbon materials, wh...
We here segregate the contributions of contact improvement and change in multiwalled carbon nanotube...
The conductivity of carbon-nanotube (CNT) networks can be improved markedly by doping with nitric ac...
We use density functional theory to study the effect of molecular adsorbates on the conductance of m...
Carbon nanotubes (CNT) have a very large application potential in the rapid developing field of mole...
Carbon nanotubes have been regarded as ideal building blocks for nanoelectronics and multifunctional...
The conductivity of carbon nanotube thin films is mainly determined by carbon nanotube junctions, th...
Funding Information: We acknowledge Business Finland for funding (Grant No. 3767/31/2019) and Finnis...
Funding Information: We acknowledge Business Finland for funding (grant no. 3767/31/2019) and Finnis...
Carbon nanotube (CNT) films have excellent conductivity and suitable flexibility for chemical sensin...
Carbon nanotube (CNT) films have excellent conductivity and suitable flexibility for chemical sensin...
We address the issue of the low electrical conductivity observed in carbon nanotube networks using f...
The authors have studied the electronic structure and transport properties of hybrid nanowires made ...
Due to the exceptional strength, stiffness and excellent electrical and thermal properties, carbon n...
Cataloged from PDF version of article.Our first-principles study of the contact between a semiconduc...
Fullerene functionalized carbon nanotubes—NanoBuds—form a novel class of hybrid carbon materials, wh...
We here segregate the contributions of contact improvement and change in multiwalled carbon nanotube...
The conductivity of carbon-nanotube (CNT) networks can be improved markedly by doping with nitric ac...
We use density functional theory to study the effect of molecular adsorbates on the conductance of m...
Carbon nanotubes (CNT) have a very large application potential in the rapid developing field of mole...
Carbon nanotubes have been regarded as ideal building blocks for nanoelectronics and multifunctional...