Abstract:
The ionic conductivity and phase transitions of HZr2(PO4)3·H2O and H0.98Zr1.98Nb0.02(PO4)3·H2O were studied using impedance spectroscopy and high temperature X-ray powder diffraction.
Document Type:
Article
Language: English
Citation:
I. A. Stenina, M. N. Kislitsyn, I. Yu. Pinus, A. B. Yaroslavtsev, “Phase transition through intermediate formation?”, Mendeleev Commun., 14:5 (2004), 191–193
Linking options:
https://www.mathnet.ru/eng/mendc3870
https://www.mathnet.ru/eng/mendc/v14/i5/p191
This publication is cited in the following 5 articles:
V. I. Pet'kov, A. S. Shipilov, D. G. Fukina, I. A. Stenina, A. B. Yaroslavtsev, “Synthesis and Ionic Conductivity of LiZr2(VO4)x(PO4)3 –
x”, Russ J Electrochem, 57:4 (2021), 388
N. I. Matskevich, T. Wolf, M. Merz, S. V. Stankus, D. A. Samoshkin, I. V. Vyazovkin, A. N. Semerikova, E. N. Tkachev, “Synthesis and thermodynamic functions of barium cerate co-doped with erbium and indium”, Mendeleev Commun., 29:3 (2019), 352–354
M. A. Moshareva, S. A. Novikova, A. B. Yaroslavtsev, “Synthesis and ionic conductivity of (NH4)1–x H x Hf2(PO4)3 (x = 0–1) NASICON-type materials”, Inorg Mater, 52:12 (2016), 1283
I.A. Stenina, M.G. Zhizhin, B.I. Lazoryak, A.B. Yaroslavtsev, “Phase transitions, structure and ion conductivity of zirconium hydrogen phosphates, H1±XZr2-XMX(PO4)3·H2O (M=Nb, Y)”, Materials Research Bulletin, 44:7 (2009), 1608
A. B. Yaroslavtsev, I. A. Stenina, “Complex phosphates with the NASICON structure (M x A2(PO4)3)”, Russ. J. Inorg. Chem., 51:S1 (2006), S97