We present the use of carbon nanotubes (CNTs) as nanoreaction vessels to confine chemical reactions within the carbon nano-"test tube". This is achieved by functionalizing two redox reagents, anthraquinonnyl and 4-nitrophenyl groups, on the same CNT. It was found that the CNT can mediate the chemical reaction between the two redox reagents and generate 4-arylamine groups at the CNT surface. The reaction can proceed only when both the reagents are confined on the same CNT; if the reagents are located on different tubes, reaction ceases. © 2008 American Chemical Society
Multi-walled C nanotubes (MWCNTs) have been chem. derivatized via the redn. of anthraquinone-1-diazo...
The present invention is directed to novel processes for the functionalization (derivatization) of c...
The work presented in this thesis describes the use of carbon nanotubes as both electrodes and conta...
We present the use of carbon nanotubes (CNTs) as nanoreaction vessels to confine chemical reactions ...
Judicious application of site-selective reactions to non-aligned and aligned carbon nanotubes has op...
Progress in the development of carbon nanotubes (CNTs) has stimulated great interest among industrie...
Carbon nanotubes(CNTs) have well defined hollow interiors and exhibit unusual mechanical and thermal...
The effects of confinement inside carbon nanotubes on catalysisThe unique tubular morphology of carb...
We demonstrate here a concept that chemical reactions can be enhanced by utilizing the confined hydr...
The present study systematically examined the kinetics of a hydroxyl radical scavenging reaction of ...
Confinement of molecules within nanocontainers can be a powerful tool for controlling the states of ...
Progress in the development of carbon nanotubes (CNTs) has stimulated great interest among industrie...
We review a new concept for modifying the redox properties of transition metals via confinement with...
The work presented in this thesis describes the development and application of strategies to evaluat...
: Nanoscale control of chemical reactivity, manipulation of reaction pathways, and ultimately drivin...
Multi-walled C nanotubes (MWCNTs) have been chem. derivatized via the redn. of anthraquinone-1-diazo...
The present invention is directed to novel processes for the functionalization (derivatization) of c...
The work presented in this thesis describes the use of carbon nanotubes as both electrodes and conta...
We present the use of carbon nanotubes (CNTs) as nanoreaction vessels to confine chemical reactions ...
Judicious application of site-selective reactions to non-aligned and aligned carbon nanotubes has op...
Progress in the development of carbon nanotubes (CNTs) has stimulated great interest among industrie...
Carbon nanotubes(CNTs) have well defined hollow interiors and exhibit unusual mechanical and thermal...
The effects of confinement inside carbon nanotubes on catalysisThe unique tubular morphology of carb...
We demonstrate here a concept that chemical reactions can be enhanced by utilizing the confined hydr...
The present study systematically examined the kinetics of a hydroxyl radical scavenging reaction of ...
Confinement of molecules within nanocontainers can be a powerful tool for controlling the states of ...
Progress in the development of carbon nanotubes (CNTs) has stimulated great interest among industrie...
We review a new concept for modifying the redox properties of transition metals via confinement with...
The work presented in this thesis describes the development and application of strategies to evaluat...
: Nanoscale control of chemical reactivity, manipulation of reaction pathways, and ultimately drivin...
Multi-walled C nanotubes (MWCNTs) have been chem. derivatized via the redn. of anthraquinone-1-diazo...
The present invention is directed to novel processes for the functionalization (derivatization) of c...
The work presented in this thesis describes the use of carbon nanotubes as both electrodes and conta...