Simulation of the structural state of amorphous phases in nanoscale SiO2 synthesized via different methods
- Authors: Abzaev Y.A.1, Syzrantsev V.V.2,3, Bardakhanov S.P.2,3
-
Affiliations:
- Tomsk State Architecture and Civil Engineering University
- Buryat State University
- Institute of Theoretic and Applied Mechanics
- Issue: Vol 59, No 9 (2017)
- Pages: 1874-1878
- Section: Atomic Clusters
- URL: https://ogarev-online.ru/1063-7834/article/view/201077
- DOI: https://doi.org/10.1134/S1063783417090025
- ID: 201077
Cite item
Abstract
The structural state in nanoscaled SiO2 is probed experimentally via X-ray diffraction and the simulation method. The aerosil nanoparticles and nanoparticles synthesized via the electron beam evaporation are compared. The nanoparticles for all samples are shown to be in the amorphous state. The amorphous state of a SiO2 unit lattice is simulated via the molecular dynamics. The full-profile refinement of parameters for a simulated SiO2 phase (the Rietveld method) has allowed the complete structural information to be established at varying the specific surface. The unit cell parameters, the spatial atomic distribution and the degree of cell node occupation are determined, as well. The specific surface area is shown to decrease in aerosil nanoparticles and to increase in tarkosil nanoparticles with the increasing binding energy of atoms in a cell.
About the authors
Yu. A. Abzaev
Tomsk State Architecture and Civil Engineering University
Email: vvveliga@mail.ru
Russian Federation, Tomsk
V. V. Syzrantsev
Buryat State University; Institute of Theoretic and Applied Mechanics
Author for correspondence.
Email: vvveliga@mail.ru
Russian Federation, Ulan-Ude; Novosibirsk
S. P. Bardakhanov
Buryat State University; Institute of Theoretic and Applied Mechanics
Email: vvveliga@mail.ru
Russian Federation, Ulan-Ude; Novosibirsk
Supplementary files
