Nanotubes

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US Patents published 1/22/2008 and 1/29/2008
Articles from Week 06 (2/4-1/8) 2008

 

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Nanotubes

2/8/2008

Review
Lipid Nanotubes: A Unique Template To Create Diverse One-Dimensional Nanostructures

(625 – 633) Chemistry of  Materials 20 #3 (2008)
Abstract 

Review
Template-Directed Synthesis of Oxide Nanotubes: Fabrication, Characterization, and Applications

(756 – 767) Chemistry of  Materials 20 #3 (2008)
Abstract 

Polymer Tubes with Longitudinal Composition Gradient by Face-to-Face Wetting
(1076 – 1081) Chemistry of  Materials 20 #3 (2008)
Abstract 

Templated Silica Tubes with High Aspect Ratios as Effective Fillers for Enhancing the Overall Performance of Polyimide Films
(1090 – 1098) Chemistry of  Materials 20 #3 (2008)
Abstract 

Preparation and photocatalytic activity of nanotubes obtained from titanium dioxide
(3-14) Catalysis Today 130 #1-4 (2008)
Abstract

Experimental and theoretical characterization of implantable neural microelectrodes modified with conducting polymer nanotubes
(1273-1283) Biomaterials 29  #9 (2008)
Abstract

Electron transport of nanotube-based gas sensors: An ab initio study
(# 022103) Applied Physics Letters 92 #2 (2008)
Abstract

Self-Supported Formation of Needlelike Co3O4 Nanotubes and Their Application as Lithium-Ion Battery Electrodes 
(p 258-262)
Advanced Materials 20 #2 (2008)
Abstract  

 

Analysis           **************************************

Applications           **********************************

 

Arrays   *******************************************

2/8/2008

Template Synthesis of Highly Oriented Polyfluorene Nanotube Arrays
(996 – 1003) Chemistry of  Materials 20 #3 (2008)
Abstract 

Enhanced thermal conductivity by aggregation in heat transfer nanofluids containing metal oxide nanoparticles and carbon nanotubes
(# 023110) Applied Physics Letters 92 #2 (2008)
Abstract

Sparse Multiwall Carbon Nanotube Electrode Arrays for Liquid-Crystal Photonic Devices 
(p 363-366)
Advanced Materials 20 #2 (2008)
Abstract  

 

Capacitors          ************************************

Carbon Arc Discharge     *****************************

 

Carbon Nanotubes      *********************************

2/8/2008

Comparisons of sorbent cost for the removal of Ni2+ from aqueous solution by carbon nanotubes and granular activated carbon
(239-246) Journal of Hazardous Materials 151  #1 (2008)
Abstract

Structures and electronic transport of water molecular nanotubes embedded in carbon nanotubes
(# 034707) Journal of Chemical Physics 128 #3 (2008)
Abstract

Enhancement of through-thickness thermal conductivity in adhesively bonded joints using aligned carbon nanotubes
(658-665) Composites Science and Technology 68 #3-4 (2008)
Abstract

Self-organizing alignment of carbon nanotube in shape memory segmented fiber prepared by in situ polymerization and melt spinning
(314-321) Composites Part A: Applied Science and Manufacturing 39 #2 (2008)
Abstract

Capacitive performance of an ultralong aligned carbon nanotube electrode in an ionic liquid at 60 °C
(30-34) Carbon 46 #1 (2008)
SummaryPlus

Solid-phase transformation of glass-like carbon nanoparticles into nanotubes and the related mechanism
(92-98) Carbon 46 #1 (2008)
SummaryPlus

Preparation of short and water-dispersible carbon nanotubes by solid-state cutting
(117-125) Carbon 46 #1 (2008)
SummaryPlus

Tuning nitrogen functionalities in catalytically grown nitrogen-containing carbon nanotubes
(138-148) Carbon 46 #1 (2008)
SummaryPlus

Transition from direct tunneling to field emission in carbon nanotube intramolecular junctions
(# 042107) Applied Physics Letters 92 #4 (2008)
Abstract

The formation of pentagon-heptagon pair defect by the reconstruction of vacancy defects in carbon nanotube
(# 043104) Applied Physics Letters 92 #4 (2008)
Abstract  

Carbon nanotube surface attenuated infrared absorption
(# 043105) Applied Physics Letters 92 #4 (2008)
Abstract

 

Catalysts   *****************************************

 

Chemical Vapor Deposition  **************************

2/8/2008

Effect of sputtered Cu film’s diffusion barrier on the growth and field emission properties of carbon nanotubes by chemical vapor deposition
(701-704) Applied Physics A Materials Science & Processing 90 #4 (2008) 

 

Coated Nanotubes     ********************************

Coated Paper             ********************************

Coatings  ******************************************

Conductivity ***************************************

Controlled Release   *********************************

Decorating  ****************************************

Defects        *****************************************

Dispersions      **************************************

DNA and Nanotubes            ****************************

Doped Nanotubes          *******************************

 

Double Wall           ***********************************

2/8/2008

Structural transformation of double-walled carbon nanotube bundles into multi-walled carbon nanotubes induced by current treatment
(158-161) Diamond and Related Materials 17 #2 (2008)
Abstract

 

Electrical Properties          *****************************

Electrochemistry         ********************************

Electrodes           *************************************

Electronics    ****************************************

Electrophoresis  *************************************

Electrospinning  *************************************

Emission          ***************************************

Encapsulation           **********************************

Energy Storage           *********************************

Fabrication             ***********************************

 

Filled Nanotubes              ******************************

2/8/2008

Room-temperature, open-air, wet intercalation of liquids, surfactants, polymers and nanoparticles within nanotubes and microchannels
(696- 702) Journal of Materials Chemistry 18 #6 (2008)

Molecular dynamics simulations of the torsional instability of carbon nanotubes filled with hydrogen or silicon atoms
(# 043120) Applied Physics Letters 92 #4 (2008)
Abstract

 

Film               ****************************************

2/8/2008

On the factors controlling the mechanical properties of nanotube films
(41-47) Carbon 46 #1 (2008)
SummaryPlus

 

Flame Retardants   ***********************************

Fluorescence    ***************************************

Formation           *************************************

Fuel Cells             *************************************

 

Functionalized Nanotubes         ************************

2/8/2008

Functionalized Carbon Nanotubes in Drug Design and Discovery
(60 – 68) Accounts of  Chemical  Research 41 #1 (2008)
Abstract 

 

Grafting   ******************************************

 

Magnetic Nanotubes   ********************************

2/8/2008

Magnetic switching of ferromagnetic nanotubes
(# 032505) Applied Physics Letters 92 #3 (2008)
Abstract

 

Mechanical Properties        ****************************

Medical Applications    *******************************

 

Multiwall Nanotubes (MWCNT)       ********************

2/8/2008

Noncovalent Functionalization of Multiwalled Carbon Nanotubes by Anionic Polymer Poly(Sodium 4-Styrenesulfonate) in Water
(240 – 244) Journal of  Dispersion  Science and Technology 29 #2 (2008)

Combined torsional buckling of multi-walled carbon nanotubes coupling with axial loading and radial pressures
(2128-2139) International Journal of Solids and Structures 45 #7-8 (2008)
Abstract

Effect of processing method on the shielding effectiveness of electromagnetic interference of MWCNT/PMMA composites
(963-968) Composites Science and Technology 68 #3-4 (2008)
Abstract

Cobalt-polypyrrole-multiwalled carbon nanotube catalysts for hydrogen and alcohol fuel cells
(2-11) Carbon 46 #1 (2008)
SummaryPlus

Electrochemical Quartz Crystal Microbalance Studies on Enzymatic Specific Activity and Direct Electrochemistry of Immobilized Glucose Oxidase in the Presence of Sodium Dodecyl Benzene Sulfonate and Multiwalled Carbon Nanotubes
(262 – 272) Biotechnology  Progress 24  #1 (2008)
Abstract 

Nanowelding of a multiwalled carbon nanotube to metal surface and its electron field emission properties
(# 023114) Applied Physics Letters 92 #2 (2008)
Abstract

Diffraction microscopy using 20  kV electron beam for multiwall carbon nanotubes
(# 024106)  Applied Physics Letters 92 #2 (2008)
Abstract

Dynamic Imaging of Functionalized Multi-Walled Carbon Nanotube Systemic Circulation and Urinary Excretion 
(p 225-230)
Advanced Materials 20 #2 (2008)
Abstract  

Sparse Multiwall Carbon Nanotube Electrode Arrays for Liquid-Crystal Photonic Devices 
(p 363-366)
Advanced Materials 20 #2 (2008)
Abstract  

 

Nanocomposites   ************************************

2/8/2008

Morphology, thermal expansion, and electrical conductivity of multiwalled carbon nanotube/epoxy composites 
(p 979-986)
Journal of Applied Polymer  Science 108 #2 (2008)
Abstract  

Multiscale mechanical phenomena in electrospun carbon nanotube composites 
(p 1191-1200)
Journal of Applied Polymer  Science 108 #2 (2008)
Abstract  

Carbon nanotube composite: Dispersion routes and field emission parameters
(753-759) Composites Science and Technology 68 #3-4 (2008)
Abstract

Influence of injection molding parameters on the electrical resistivity of polycarbonate filled with multi-walled carbon nanotubes
(777-789) Composites Science and Technology 68 #3-4 (2008)
Abstract

Effect of processing method on the shielding effectiveness of electromagnetic interference of MWCNT/PMMA composites
(963-968) Composites Science and Technology 68 #3-4 (2008)
Abstract

Chitosan particle/multiwall carbon nanotube composites by electrostatic interactions
(292-296) Colloids and Surfaces A: Physicochemical and Engineering Aspects 316 #1-3 (2008)
Abstract

Production of electrically conductive paper by adding carbon nanotubes
(169-171) Carbon 46 #1 (2008)
SummaryPlus

Poly-L-lysine/hydroxyapatite/carbon nanotube hybrid nanocomposite applied for piezoelectric immunoassay of carbohydrate antigen 19-9
(
184 - 190,) The Analyst 133 #2 (2008)

Conductive Carbon Nanotube Composite Microprobes 
(p 357-362)
Advanced Materials 20 #2 (2008)
Abstract  

 

Nanotube Fibers  ************************************

Optical Properties      *********************************

Paper       *******************************************

Pyrolysis    ******************************************

Reactions     *****************************************

Reactors  *******************************************

Scanning Microscope Tips  ****************************

Semiconducting Devices  ******************************

Silica Nanotubes     ***********************************

 

Single Wall Nanotubes (SWCNT)        *******************

2/8/2008

Use of plasma fluorinated single-walled carbon nanotubes for the preparation of nanocomposites with epoxy matrix
(1008-1014) Composites Science and Technology 68 #3-4 (2008)
Abstract

Electron spin resonance studies of hydrogen adsorption on single-walled carbon nanotubes
(152-155) Chemical Physics Letters 452  #1-3 (2008)
Abstract

Theoretical study of adsorption of C1–C3 alkoxides on various cap-ended and open-ended armchair (5,5) single-walled carbon nanotubes
(12-18) Carbon 46 #1 (2008)
SummaryPlus

Neutralized fluorine radical detection using single-walled carbon nanotube network
(24-29) Carbon 46 #1 (2008)
SummaryPlus

Microwave-induced electrophilic addition of single-walled carbon nanotubes with alkylhalides
(2431-2435) Applied Surface Science 254  #8 (2008)
Abstract

One-step grown suspended n-type semiconducting single wall carbon nanotube field effect transistors with carbon nanotube electrodes
(# 043110) Applied Physics Letters 92 #4 (2008)
Abstract  

Increasing the length of single-wall carbon nanotubes in a magnetically enhanced arc discharge
(# 043129) Applied Physics Letters 92 #4 (2008)
Abstract

Kinetics of reactive ion etching upon single-walled carbon nanotubes
(# 031502) Applied Physics Letters 92 #3 (2008)
Abstract  

Terahertz detection in single wall carbon nanotubes
(# 033105) Applied Physics Letters 92 #3 (2008)
Abstract

Ion irradiation effects on conduction in single-wall carbon nanotube networks
(597-602) Applied Physics A Materials Science & Processing 90 #4 (2008) 

A parametric study of the synthesis and purification of single-walled carbon nanotubes using the high-pressure carbon monoxide process
(637-643) Applied Physics A Materials Science & Processing 90 #4 (2008) 

 

Solar Technology  ************************************

Solutions  (Suspensions)   ******************************

Sorption   *******************************************

Spectroscopy        *************************************

Solutions  /Suspensions   *******************************

Thermal Conductivity         *****************************

 

Titanium Nanotubes     ********************************

2/8/2008

Effects of synthesis temperature on the microstructures and basic dyes adsorption of titanate nanotubes
(494-503) Journal of Hazardous Materials 150  #3 (2008)
Abstract

Synthesis, Characterization, and Photocatalytic Activity of N-Doped TiO2 Nanotubes
(245 – 249) Journal of  Dispersion  Science and Technology 29 #2 (2008)

 

Toxicity   ********************************************

Transistors    *****************************************

Transport      *****************************************

Water Soluble Nanotubes  ******************************

 

Zinc Nanotubes     *************************************

In Situ Self-Assembly of Thin ZnO Nanoplatelets into Hierarchical Mesocrystal Microtubules with Surface Grafting of Nanorods: A General Strategy towards Hollow Mesocrystal Structures 
(p 339-342)
Advanced Materials 20 #2 (2008)
Abstract

Synthesis and field emission of two kinds of ZnO nanotubes: taper-like and flat-roofed tubes
(739-743) Applied Physics A Materials Science & Processing 90 #4 (2008) 

 

Roger D. Corneliussen
Editor
www.nanotechnology-profit.com

Tel: 610 363 9920
Fax: 610 363 9921
E-Mail: cornelrd@bee.net

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Copyright 2008 by Roger D. Corneliussen.
No part of this transmission is to be duplicated in any manner or forwarded by electronic mail without the express written permission of Roger D. Corneliussen
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