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Наносистемы: физика, химия, математика

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Diffraction-based characterization of amorphous sp2 carbon: sensitivity to domain-like packing of nanostructures

https://doi.org/10.17586/2220-8054-2016-7-1-226-233

Аннотация

We extend our method formerly suggested for structure refinement of the amorphous sp2 carbon, based on neutron or x-ray diffraction, and applied to amorphous fullerene and its derivatives produced by vacuum annealing. To diagnose heterogeneous media, the method uses the rigid body molecular dynamics simulations of the domain-like packing for a predefined set of structural blocks. Previously, the sensitivity of the results to the variability of mutual positions of these structural blocks was analyzed in two limiting cases: (A) any domain contains only identical structural blocks and (B) all domains are the identical mixtures of many different structural blocks with variable packing of the blocks. Here, we extend this analysis to intermediate cases which correspond to domains of the type “B” with the subdomains of the type “A”. Such a structuring corresponds to a partial destruction of the nanoscale structure of the sample (e.g. by low-temperature annealing).

Об авторах

V. S. Neverov
National Research Center “Kurchatov Institute”
Россия

Moscow



P. A. Borisova
National Research Center “Kurchatov Institute”
Россия

Moscow



A. B. Kukushkin
National Research Center “Kurchatov Institute”; National Research Nuclear University “MEPhI”
Россия

Moscow



V. V. Voloshinov
Institute for Information Transmission Problems (Kharkevich Institute), Russian Academy of Sciences
Россия

Moscow



Список литературы

1. Borisova P.A., Agafonov S.S., Blanter M.S., Glazkov V.P., Somenkov V.A. Neutron studies of structural changes in amorphous C60 fullerite under temperature, pressure, and thermobaric effects. Bulletin of the Russian Academy of Sciences: Physics, 2013, 77(11), P. 1363–1366.

2. Juhas P., Cherba D.M., Duxbury P.M., Punch W.F., Billinge S.J.L. Ab initio determination of solid-state nanostructure. Nature, 2006, 440, P. 655–658.

3. McGreevy R.L. Reverse Monte Carlo modelling. J. Phys.: Condens. Matter, 2001, 13, P. R877.

4. Rud A.D., Kiryan I.M., Nikonova R.M., Lad’yanov V.I., Bilyi N.M., Merzlyakova M.A. Structure Transformation in Fullerenes C60 at High Temperature Treatment. Proc. Intern. Conf. “Nanomaterials: applications and properties”. Crimea, Ukraine, 16–19th September 2013, Sumy State University Publishing, 2013, Vol. 2(3), 03NCNN28 (4pp).

5. Neverov V.S., Borisova P.A., Kukushkin A.B., Voloshinov V.V. A method for diffraction-based identification of amorphous sp2 carbon materials. J. Non-Cryst. Solids, 2015, 427, P. 166–174.

6. Kukushkin A.B., Neverov V.S., Marusov N.L., Semenov I.B., Kolbasov B.N., Voloshinov V.V., Afanasiev A.P., Tarasov A.S., Stankevich V.G., Svechnikov N.Yu., Veligzhanin A.A., Zubavichus Ya.V., Chernozatonskii L.A. Few-nanometer-wide carbon toroids in the hydrocarbon films deposited in tokamak T-10. Chem. Phys. Lett., 2011, 506, P. 265–268.

7. Ciccotti G., Ryckaert J.P. Molecular dynamics simulation of rigid molecules. Comp. Phys. Rep., 1986, 4(6), P. 346–392.


Рецензия

Для цитирования:


Neverov V.S., Borisova P.A., Kukushkin A.B., Voloshinov V.V. Diffraction-based characterization of amorphous sp2 carbon: sensitivity to domain-like packing of nanostructures. Наносистемы: физика, химия, математика. 2016;7(1):226-233. https://doi.org/10.17586/2220-8054-2016-7-1-226-233

For citation:


Neverov V.S., Borisova P.A., Kukushkin A.B., Voloshinov V.V. Diffraction-based characterization of amorphous sp2 carbon: sensitivity to domain-like packing of nanostructures. Nanosystems: Physics, Chemistry, Mathematics. 2016;7(1):226-233. https://doi.org/10.17586/2220-8054-2016-7-1-226-233

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ISSN 2220-8054 (Print)
ISSN 2305-7971 (Online)