Thermodynamic model of ZnO-Nb2O5-P2O5 glasses - parameterization and validation

被引:2
|
作者
Liska, Marek [1 ]
Machacek, Jan [2 ]
Chromcikova, Maria [1 ]
Holubova, Jana [3 ]
Cernosek, Zdenek [3 ]
机构
[1] Fun Glass Vitrum Laugaricio Joint Glass Ctr IIC S, Trencin, Slovakia
[2] Univ Chem & Technol, Tech 5, CZ-16628 Prague, Czech Republic
[3] Univ Pardubice, Fac Chem Technol, Dept Gen & Inorgan Chem, Pardubice, Czech Republic
基金
欧盟地平线“2020”;
关键词
Malfait; MCR; Raman spectra; thermodynamic model; RAMAN-SPECTRA; NIOBIUM;
D O I
10.1111/ijag.15903
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
On the basis of experimental structural data ten system components were considered in the ZnO-Nb2O5-P2O5 thermodynamic model of Shakhmatkin and Vedishcheva - ZnO, Nb2O5, P2O5, ZnP4O11, Zn(PO3)(2), Zn2P2O7, Zn-3(PO4)(2), NbO(PO3)(3), (NbO)(4)(P2O(7))(3), and NbOPO4. The molar Gibbs energies of ZnO, Nb2O5, P2O5, and Zn-3(PO4)(2) were taken from the FACT database. The unknown Gibbs energies of the other components were estimated by minimizing the sum of squares of deviations between the calculated and measured equilibrium molar amounts of system components for the series xNb(2)O(5)center dot 50ZnO center dot(50-x)P2O5. The model was validated by the Multivariate Curve Resolution (MCR) and Malfait's analysis of Raman spectra of xNb(2)O(5)center dot(50-x)ZnO center dot 50P(2)O(5) glasses. The MCR analysis performed for three components resulted in loadings that were in acceptable coincidence with partial Raman spectra obtained by Malfait's decomposition. Both the MCR and the Malfait's decomposition reproduced the experimental Raman spectra very well - on the level of experimental error.
引用
收藏
页码:581 / 587
页数:7
相关论文
共 50 条
  • [41] Thermal properties of quaternary TeO2-ZnO-Nb2O5-Gd2O3 glasses
    Elkhoshkhany, N.
    Abbas, Rafik
    El-Mallawany, R.
    Sharba, K. S. H. Humoud
    CERAMICS INTERNATIONAL, 2014, 40 (08) : 11985 - 11994
  • [42] Properties and structures of TiO2-ZnO-P2O5 glasses
    Segawa, Hiroyo
    Akagi, Naoto
    Yano, Tetsuji
    Shibata, Shuichi
    JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 2010, 118 (1376) : 278 - 282
  • [43] Structure and properties of NaPO3-ZnO-Nb2O5-Al2O3 glasses
    Chenu, S.
    Werner-Zwanziger, U.
    Calahoo, C.
    Zwanziger, J. W.
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2012, 358 (15) : 1795 - 1805
  • [44] Effect of borosilicate glasses on the microwave dielectric properties of ZnO–Nb2O5–Ta2O5 system
    P. S. Anjana
    N. Gopakumar
    S. J. Sajan
    Journal of Materials Science: Materials in Electronics, 2013, 24 : 2035 - 2042
  • [45] Radiation-induced color centers in γ-irradiated glasses in the Na2O-Nb2O5-P2O5 system
    E. V. Avdeeva
    T. V. Bocharova
    G. O. Karapetyan
    A. M. Mironov
    Glass Physics and Chemistry, 2006, 32 : 153 - 161
  • [46] Radiation-induced color centers in γ-irradiated glasses in the Na2O-Nb2O5-P2O5 system
    Avdeeva, EV
    Bocharova, TV
    Karapetyan, GO
    Mironov, AM
    GLASS PHYSICS AND CHEMISTRY, 2006, 32 (02) : 153 - 161
  • [47] The glass forming ability of TeO2-Nb2O5- P2O5 glasses and its properties
    Lin, Jian
    Liu, Changcheng
    Yang, Hsiwen
    Wei, Hengyong
    Qing, Rui
    Cailiao Yanjiu Xuebao/Chinese Journal of Materials Research, 2010, 24 (01): : 87 - 90
  • [48] Thermopower of Semiconducting Glasses in the V2O5-P2O5 and V2O5-CdS-P2O5 Systems
    C. M. Khairnar
    S. P. Yawale
    S. V. Pakade
    Glass Physics and Chemistry, 2005, 31 : 611 - 620
  • [49] Comparison of simulation of ZnO+Nb2O5 with 5% doped V2O5 and ZnO+Nb2O5 in Cylindrical Dielectric Resonator Antenna for WLAN
    Singh, Amit
    Singh, Sanjai
    2019 5TH INTERNATIONAL CONFERENCE ON ADVANCED COMPUTING & COMMUNICATION SYSTEMS (ICACCS), 2019, : 33 - 36
  • [50] Nb2O5-TeO2 and Nb2O5-Li2O-TeO2 glasses: Evaluation of elastic properties
    Abd El-Moneim, Amin
    El-Mallawany, R.
    Saddeek, Yasser B.
    JOURNAL OF NON-CRYSTALLINE SOLIDS, 2022, 575