Original Research
Influence of nanoconfinement on structure and phase transitions in RbNO₃/porous glass composites
H. T. Nguyen
a
A. Yu. Milinskiy
b
S. V. Baryshnikov
b
I. A. Chernechkin
b
P. T. B. Thao
a

a Faculty of Electrical Engineering Technology, Industrial University of Ho Chi

Minh City, Ho Chi Minh City, Vietnam

b Faculty of Physics and Mathematics, Blagoveshchensk State Pedagogical

University, Blagoveshchensk, Russia


Journal of Ovonic Research 2025, 21(4),505-512; https://doi.org/10.15251/JOR.2025.214.505
Submitted:Jun 07, 2025
Accepted:Aug 15, 2025
Published:Aug 15, 2025
+
Cite This Article
H. T. Nguyen ,A. Yu. Milinskiy ,S. V. Baryshnikov ,I. A. Chernechkin ,P. T. B. Thao . (2025). Journal of Ovonic Research. Influence of nanoconfinement on structure and phase transitions in RbNO₃/porous glass composites, 21(4), ,505-512. https://doi.org/10.15251/JOR.2025.214.505
Abstract

This study aims at clarifying the structure, thermal and dielectric properties of a nanocomposite consisting of rubidium nitrate embedded in a porous borosilicate glass matrix (15.3 nm). Experimental data were obtained using X-ray diffraction, Fourier- transform infrared spectroscopy, differential thermal analysis and dielectric measurements, enabling the identification of the effects of nanoconfinement on the phase transitions. It was found that the temperature of phase transition from the trigonal to cubic phase in the filled rubidium nitrate was significantly reduced from 439 K to 422 K. This finding was corroborated by both differential thermal analysis, X-ray diffraction methods and Landau's phenomenological theory.

©2026 by the authors. Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Journal Browser
Search

Copyright © Virtual Company of Physics. All rights reserved.

TOP