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Carbon Nanotubes:  Synthesis, Integration, and Properties

Accounts of Chemical Research · 2002 · Vol. 35(12) · pp. 1035–1044
Hongjie Dai

Abstract

Synthesis of carbon nanotubes by chemical vapor deposition over patterned catalyst arrays leads to nanotubes grown from specific sites on surfaces. The growth directions of the nanotubes can be controlled by van der Waals self-assembly forces and applied electric fields. The patterned growth approach is feasible with discrete catalytic nanoparticles and scalable on large wafers for massive arrays of novel nanowires. Controlled synthesis of nanotubes opens up exciting opportunities in nanoscience and nanotechnology, including electrical, mechanical, and electromechanical properties and devices, chemical functionalization, surface chemistry and photochemistry, molecular sensors, and interfacing with soft biological systems.

Carbon Nanotubes in CompositesGraphene research and applicationsFullerene Chemistry and ApplicationsCarbon nanotubeNanotechnologyMaterials scienceSurface modificationvan der Waals forceNanoscopic scaleChemical vapor depositionNanowireCatalysisNanoparticle
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References
Science of fullerenes and carbon nanotubes
Carbon · 1997 · 4,494 citations
Quantum Theory of Solids
American Journal of Physics · 1965 · 1,871 citations
Single- and multi-wall carbon nanotube field-effect transistors
Applied Physics Letters · 1998 · 2,778 citations
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