Papers:
Advanced Aerospace Applications for Carbon Nanotube Materials
The use of floating catalyst chemical vapor deposition to make carbon nanotube (CNT) materials for aerospace structures overcomes the need for dispersants, and allows for products that consist mostly of nanotubes. CNT-based material is currently [...]
SWCNT vs MWCNT and Nanofibers. Applications in lithium-ion batteries and transparent conductive films
Predtechenskiy M., Bezrodny A., Bobrenok O., Kochnev A., Kosolapov A., Krechetova N., Saik V., OCSiAl LLC (OCSiAl Group), US
Among the most promising applications of carbon nanotubes are their use as additives in electrode material of lithium-ion batteries and in the production of flexible transparent conductive films. Experiments with various types of cathode materials [...]
Layer-on-layer Assembly of Macroscopic 2D and 3D Carbon Nanomaterial Architectures
Although carbon nanomaterials are often labeled as the future replacement for silicon in electronics and a new generation of robust materials, there are major shortcomings in the assembly of carbon nanomaterials into higher order structures. [...]
Silver coated carbon nanotubes regulate virulence gene expression in Salmonella Typhimurium
Silver coated carbon nanotubes (AgCNTs) have several biomedical applications and their antibacterial activity against several multi drug resistant pathogens is well documented. However, the exact molecular mechanism for their antibacterial activity is yet to be [...]
Single Wall Carbon Nanotube Inhibition of DNA Damage
Carbon nanotubes (CNTs) are remarkable materials in terms of their enhanced thermal and electrical conductivities, tensile strengths and mechanical properties. However, our understanding of the potential environmental, health and safety risks of these novel nanomaterials [...]
Carbon NanoDots for Selective Optical Cation Detection
In the present work, custom designed and synthesized carbon nanodots (C-dots) with cation selective functional organic ligands (carboxyl or amino) are used for the optical detection of cations. The ligands on the surface are able [...]
Effect of length and radius of singlewall carbon nanotube on its mechanical properties
A first principles atomistic calculations and analysis of Young’s modulus for short arm chair carbon nanotubes with different lengths and radii is]]are reported. The atomic forces and total energies were computed for the carbon nanotubes [...]
Pulsed Laser Annealing of Nanocarbon Materials
Pulsed laser annealing of nanocarbons, with focus upon soot was performed using a Nd:YAG laser operating at 1064 nm and laser fluence of 250 mJ/cm2. A gated intensified CCD captured the spectra of the material [...]
Cross-Linked Single-Walled Carbon Nanotube Buckypapers and their Composites
Guan J., Jakubinek M.B., Ashrafi B., Johnson M., White M.A., Simard B., National Research Council Canada, CA
Single-walled carbon nanotubes (SWCNT) covalently modified with OH functional groups were assembled into buckypapers through solvent dispersion and vacuum filtration. These SWCNT-OH buckypapers were subsequently crosslinked by wetting with bifunctional linkers followed by hot compression, [...]
Graphene-Based Nanostructures for Advanced Sensing Applications
New nanostructured Schottky junctions based on graphene/platinum grown on different substrates are fabricated and investigated. The integration of graphene layer (s) on regular M-S junctions was only possible by using an ALD grown platinum thin [...]
Application of chemiluminescent resonance energy transfer and graphene sheet for the rapid quantification of mercury in a sample
Using intra chemiluminescent resonance energy transfer (CRET) between DNA aptamer and fluorescein and physical property of graphene sheet, cost-effective and simple biosensor was developed for the rapid quantification of Hg2+ in a sample. The limit [...]
Journal: TechConnect Briefs
Volume: 1, Advanced Materials: TechConnect Briefs 2015
Published: June 14, 2015
Industry sector: Advanced Materials & Manufacturing
Topic: Carbon Nano Structures & Devices
ISBN: 978-1-4987-4727-1