The geometrical characteristics of fcc, hcp, and polycrystalline nanowires: simulations of transmission electron microscopy images and diffraction patterns

To theoretically study the physicochemical properties of nanowires, it is necessary to build the corresponding atomic geometrical models. Here we present the geometrical characteristics of nanowires with fcc, hcp, and polycrystalline structures. We consider fcc and hcp wires grown along the (111) and z axis directions, respectively, with various diameters and lengths. In addition, since staking faults in these systems are very common, we analyze also the case of nanowires formed by stacked pieces having different crystalline structures and orientations, a fact that leads to the formation of several internal interfaces. By performing simulations of transmission electron microscopy (TEM) images and diffraction patterns of the nanowires considered here, we reveal how sensitive are the calculated images to the defocus condition as well as to the orientation of the wire with respect to the incident beam, a result that must be taken into account in order to better understand the measured data.

Saved in:
Bibliographic Details
Main Authors: Montejano-Carrizales,J.M., Guirado-López,R.A., Rodríguez-López,J.L., Morán-López,J.L.
Format: Digital revista
Language:English
Published: Sociedad Mexicana de Física 2009
Online Access:http://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0035-001X2009000400008
Tags: Add Tag
No Tags, Be the first to tag this record!
id oai:scielo:S0035-001X2009000400008
record_format ojs
spelling oai:scielo:S0035-001X20090004000082010-01-18The geometrical characteristics of fcc, hcp, and polycrystalline nanowires: simulations of transmission electron microscopy images and diffraction patternsMontejano-Carrizales,J.M.Guirado-López,R.A.Rodríguez-López,J.L.Morán-López,J.L. Nanowires fcc nanostructures hcp nanostructures TEM simulations diffraction patterns To theoretically study the physicochemical properties of nanowires, it is necessary to build the corresponding atomic geometrical models. Here we present the geometrical characteristics of nanowires with fcc, hcp, and polycrystalline structures. We consider fcc and hcp wires grown along the (111) and z axis directions, respectively, with various diameters and lengths. In addition, since staking faults in these systems are very common, we analyze also the case of nanowires formed by stacked pieces having different crystalline structures and orientations, a fact that leads to the formation of several internal interfaces. By performing simulations of transmission electron microscopy (TEM) images and diffraction patterns of the nanowires considered here, we reveal how sensitive are the calculated images to the defocus condition as well as to the orientation of the wire with respect to the incident beam, a result that must be taken into account in order to better understand the measured data.info:eu-repo/semantics/openAccessSociedad Mexicana de FísicaRevista mexicana de física v.55 n.4 20092009-08-01info:eu-repo/semantics/articletext/htmlhttp://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0035-001X2009000400008en
institution SCIELO
collection OJS
country México
countrycode MX
component Revista
access En linea
databasecode rev-scielo-mx
tag revista
region America del Norte
libraryname SciELO
language English
format Digital
author Montejano-Carrizales,J.M.
Guirado-López,R.A.
Rodríguez-López,J.L.
Morán-López,J.L.
spellingShingle Montejano-Carrizales,J.M.
Guirado-López,R.A.
Rodríguez-López,J.L.
Morán-López,J.L.
The geometrical characteristics of fcc, hcp, and polycrystalline nanowires: simulations of transmission electron microscopy images and diffraction patterns
author_facet Montejano-Carrizales,J.M.
Guirado-López,R.A.
Rodríguez-López,J.L.
Morán-López,J.L.
author_sort Montejano-Carrizales,J.M.
title The geometrical characteristics of fcc, hcp, and polycrystalline nanowires: simulations of transmission electron microscopy images and diffraction patterns
title_short The geometrical characteristics of fcc, hcp, and polycrystalline nanowires: simulations of transmission electron microscopy images and diffraction patterns
title_full The geometrical characteristics of fcc, hcp, and polycrystalline nanowires: simulations of transmission electron microscopy images and diffraction patterns
title_fullStr The geometrical characteristics of fcc, hcp, and polycrystalline nanowires: simulations of transmission electron microscopy images and diffraction patterns
title_full_unstemmed The geometrical characteristics of fcc, hcp, and polycrystalline nanowires: simulations of transmission electron microscopy images and diffraction patterns
title_sort geometrical characteristics of fcc, hcp, and polycrystalline nanowires: simulations of transmission electron microscopy images and diffraction patterns
description To theoretically study the physicochemical properties of nanowires, it is necessary to build the corresponding atomic geometrical models. Here we present the geometrical characteristics of nanowires with fcc, hcp, and polycrystalline structures. We consider fcc and hcp wires grown along the (111) and z axis directions, respectively, with various diameters and lengths. In addition, since staking faults in these systems are very common, we analyze also the case of nanowires formed by stacked pieces having different crystalline structures and orientations, a fact that leads to the formation of several internal interfaces. By performing simulations of transmission electron microscopy (TEM) images and diffraction patterns of the nanowires considered here, we reveal how sensitive are the calculated images to the defocus condition as well as to the orientation of the wire with respect to the incident beam, a result that must be taken into account in order to better understand the measured data.
publisher Sociedad Mexicana de Física
publishDate 2009
url http://www.scielo.org.mx/scielo.php?script=sci_arttext&pid=S0035-001X2009000400008
work_keys_str_mv AT montejanocarrizalesjm thegeometricalcharacteristicsoffcchcpandpolycrystallinenanowiressimulationsoftransmissionelectronmicroscopyimagesanddiffractionpatterns
AT guiradolopezra thegeometricalcharacteristicsoffcchcpandpolycrystallinenanowiressimulationsoftransmissionelectronmicroscopyimagesanddiffractionpatterns
AT rodriguezlopezjl thegeometricalcharacteristicsoffcchcpandpolycrystallinenanowiressimulationsoftransmissionelectronmicroscopyimagesanddiffractionpatterns
AT moranlopezjl thegeometricalcharacteristicsoffcchcpandpolycrystallinenanowiressimulationsoftransmissionelectronmicroscopyimagesanddiffractionpatterns
AT montejanocarrizalesjm geometricalcharacteristicsoffcchcpandpolycrystallinenanowiressimulationsoftransmissionelectronmicroscopyimagesanddiffractionpatterns
AT guiradolopezra geometricalcharacteristicsoffcchcpandpolycrystallinenanowiressimulationsoftransmissionelectronmicroscopyimagesanddiffractionpatterns
AT rodriguezlopezjl geometricalcharacteristicsoffcchcpandpolycrystallinenanowiressimulationsoftransmissionelectronmicroscopyimagesanddiffractionpatterns
AT moranlopezjl geometricalcharacteristicsoffcchcpandpolycrystallinenanowiressimulationsoftransmissionelectronmicroscopyimagesanddiffractionpatterns
_version_ 1756219923680460800