Title:
Nanomechanics of individual carbon nanotubes from pyrolytically grown arrays

dc.contributor.author Gao, Rui Ping
dc.contributor.author Wang, Z. L. (Zhong Lin)
dc.contributor.author Bai, Zhigang
dc.contributor.author de Heer, Walter A.
dc.contributor.author Dai, Liming
dc.contributor.author Gao, Mei
dc.date.accessioned 2006-04-12T20:42:07Z
dc.date.available 2006-04-12T20:42:07Z
dc.date.issued 2000-07-17
dc.description.abstract The bending modulus of individual carbon nanotubes from aligned arrays grown by pyrolysis was measured by in situ electromechanical resonance in transmission electron microscopy (TEM). The bending modulus of nanotubes with point defects was ~30 GPa and that of nanotubes with volume defect was 2–3 GPa. The time-decay constant of nanotube resonance in a vacuum of 1024 Torr was 85 ms. A femtogram nanobalance was demonstrated based on nanotube resonance; it has the potential for measuring the mass of chain-structured large molecules. The in situ TEM provides a powerful approach towards nanomechanics of fiberlike nanomaterials with well-characterized defect structures. en
dc.format.extent 473472 bytes
dc.format.mimetype application/pdf
dc.identifier.citation "Nanomechanics of Aligned Carbon Nanotube Arrays", R.P. Gao, Z.L. Wang, Z.G. Bai, W. de Heer, L. Dai and M. Gao, Phys. Rev. Letts., 85 (2000) 622-625. en
dc.identifier.uri http://hdl.handle.net/1853/9276
dc.language.iso en_US en
dc.publisher Georgia Institute of Technology en
dc.subject Transmission electron microscopy (TEM) en
dc.subject Nanotubes en
dc.title Nanomechanics of individual carbon nanotubes from pyrolytically grown arrays en
dc.type Text
dc.type.genre Article
dspace.entity.type Publication
local.contributor.author de Heer, Walter A.
local.contributor.corporatename School of Materials Science and Engineering
local.contributor.corporatename College of Engineering
relation.isAuthorOfPublication 8ab28407-deb7-4b22-bb02-63fe30f19375
relation.isOrgUnitOfPublication 21b5a45b-0b8a-4b69-a36b-6556f8426a35
relation.isOrgUnitOfPublication 7c022d60-21d5-497c-b552-95e489a06569
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