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Image of Theoretical Modeling of Inorganic Nanostructures
Symmetry and ab-initio Calculations of Nanolayers, Nanotubes and Nanowires
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Theoretical Modeling of Inorganic Nanostructures Symmetry and ab-initio Calculations of Nanolayers, Nanotubes and Nanowires

EVARESTOV, R.A. - Personal Name;

This book deals with the theoretical and computational simulation of monoperiodic nanostructures for different classes of inorganic substances. These simulations are related to their synthesis and experimental studies. A theoretical formalism is developed to describe 1D nanostructures with symmetric shapes and morphologies. Three types of models are considered for this aim: (i) nanotubes (rolled from 2D nanolayers and described within the formalism of line symmetry groups); (ii) nanoribbons (obtained from 2D nanolayers by their cutting along the chosen direction of translation); (iii) nanowires (obtained from 3D lattice by its sectioning along the crystalline planes parallel to the chosen direction of translation). Quantum chemistry ab-initio methods applied for LCAO calculations on electronic and vibrational properties of 1D nanostructures are thoroughly described. Understanding of theoretical aspects presented here enlarges the possibilities for synthesis of monoperiodic nanostructures with predictable morphology and better interpretation of their properties.


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Detail Information
Series Title
-
Call Number
-
Publisher
: Springer Berlin, Heidelberg., 2015
Collation
-
Language
English
ISBN/ISSN
978-3-662-44581-5
Classification
NONE
Content Type
text
Media Type
computer
Carrier Type
online resource
Edition
-
Subject(s)
Physical Chemistry
Nanotechnology
Nanochemistry
Nanoscale Science and Technology
Theoretical and Computational Chemistry
Nanotechnology and Microengineering,
Specific Detail Info
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Statement of Responsibility
R.A. Evarestov
Other Information
Cataloger
Yudi
Source
-
Validator
-
Digital Object Identifier (DOI)
-
Journal Volume
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Journal Issue
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  • Theoretical Modeling of Inorganic Nanostructures Symmetry and ab-initio Calculations of Nanolayers, Nanotubes and Nanowires
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