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The structure and Diffraction by Chiral Nanotubes of Arbitrary Composition

Oleg Figovsky1, Dmitry Pashin2, Zufar Khalitov2 and Diana Valeeva2
Affiliation: 
1 International Nanotechnology Research Center “Polymate”, Migdal Haemek 23100, Israel 2 Kazan State Technical University, 10, K. Marx str., Kazan, Tatarstan 420111, Russia pashin@addnano.ru
DOI: 
https://doi.org/10.23939/chcht06.02.167
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Abstract: 
The quantitative theory of diffraction by separate chiral nanotubes of arbitrary chemical composition is offered. The pseudoorthogonality effect and dependence of diffraction on the azimuthal ordering are considered. The calculated diffraction patterns for the case of electron microdiffraction by separate chrysotile nanotubes are adduced.
References: 

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[5] Figovsky O., Nasyrov I., Pashin D. et al.: Chem. & Chem. Techn., 2012, 6, 43.
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[6] Gricaenko G., Zviagin B., Boiarskaia R. et al.: Metody Elektronnoi Microskopii Mineralov. Nauka, Moskwa 1969.

[7] Galimov E. and Khalitov Z.: Modelirovanie Difrakcii Nanotrubkami. Kazan State Techn. Univ., Kazan 2007.

[8] Krinary G. and Halitov Z.: Proc. the First EPDIC. Munich 1991, 191.

[9] Whittaker E.: Acta Cryst., 1954, 7, 827.
https://doi.org/10.1107/S0365110X5400254X