In situ structure evolution from Cu(OH)(sub 2) nanobelts to copper nanowires
Article Abstract:
A study was conducted on the in situ structural evolution from Cu(OH)(sub 2) nanobelts to copper nanowires by transmission electron microscopy in a vacuum of 3 x 10(super -8) Torr. The study demonstrates a possible approach for creasing metallic copper nanowires by heat-induced decomposition under vacuum at 300 deg rees Celsius or even lower.
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2003
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In situ structure evolution from Cu(OH)(sub 2) nanobelts to copper nanowires
Article Abstract:
A study was conducted on the in situ structural evolution from Cu(OH)(sub 2) nanobelts to copper nanowires by transmission electron microscopy in a vacuum of 3 x 10(super -8) Torr. The study demonstrates a possible approach for creasing metallic copper nanowires by heat-induced decomposition under vacuum at 300 degrees Celsius or even lower.
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2003
User Contributions:
Comment about this article or add new information about this topic:
Metal-semiconductor Zn-ZnO core-shell nanobelts and nanotubes
Article Abstract:
Zn-ZnO core-shell nanobelts and nanotubes are synthesized with kinetic control in a solid-vapor phase deposition system by investigating the structurally controlled nanobelts synthesized by a solid-vapor decomposition process. It is concluded that the Sublimation of the Zn core results in the formation ZnO nanotubes.
Publication Name: Journal of Physical Chemistry B
Subject: Chemicals, plastics and rubber industries
ISSN: 1520-6106
Year: 2004
User Contributions:
Comment about this article or add new information about this topic:
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