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| Research article summary (published 16 Jul 2006): |
Quantitative analysis of defects and domain boundaries in mesoporous SBA-16 films.
Full Abstract
Some quantitative structural analyses on defects and domain boundaries observed in SBA-16 films were performed using the lattice concept and geometric phase method. These analyses show that there exist low angle, high angle and translational anti-phase domain boundaries in SBA-16 films. While some of the domain boundaries bear analogue to those found in normal solid crystals, others are similar to that found in the liquid crystals. In particular near Sigma11 and Sigma13b high angle boundaries were observed. On the one hand the Sigma11 boundaries were found to exist with or without steps (ledge) associated with them depending on whether or not the boundary plane is parallel to the densely packed lattice plane. On the other hand segments of the boundary plane in the Sigma13b boundary were found being always associated with densely packed lattice plane, with the {011} type of lattice plane in one domain being parallel to the {112} type of plane in the other domain. The translational domain boundary was observed to have a translation vector having a projected component of (1/2) <110> on the (111) plane. The bending deformation similar to that found in the nematics liquid crystal was also observed and quantitatively analyzed using the geometric phase method, and rotational field associated with the deformation was identified.
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Author information
Author/s: Wang, R H (RH); Chen, Q (Q); Chen, F R (FR); Kai, J J (JJ); Peng, L-M (LM);
Affiliation: Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, PO Box 603, Beijing 100080, China.
Journal and publication information
Publication Type: Journal Article
Journal: Micron (Oxford, England : 1993) (Micron), published in England. (Language: eng)
Reference: 2007-; vol 38 (issue 4) : pp 362-70
Dates: Created 2007/01/29; Completed 2007/03/28;
PMID: 16919963, status: PubMed-not-MEDLINE (last retrieval date: 12/26/2008)
Sourced from the National Library of Medicine. Abstract text and other information may be subject to copyright.
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