Atomic scale network structure of a barium aluminosilicate glass doped with different concentrations of rare-earth ions explored by molecular dynamics simulations

被引:3
作者
Charfi, Bilel [1 ]
Zekri, Mohamed [1 ]
Herrmann, Andreas [2 ]
Damak, Kamel [1 ]
Maalej, Ramzi [1 ]
机构
[1] Univ Sfax, Fac Sci Sfax, LaMaCoP, Sfax 3018, Tunisia
[2] Ilmenau Univ Technol, Inst Mat Sci & Engn, Dept Inorgan Nonmet Mat, Gustav Kirchoff Str 5, D-98693 Ilmenau, Germany
关键词
Molecular Dynamics Simulations; Atomistic simulations; Rare earth; Glass; ClusteringGd3+; Aluminosilicate; SILICATE-GLASSES; AL-27; NMR; X-RAY; ALUMINUM; FLUORESCENCE; YTTRIUM; LU; LA; LUMINESCENCE; LANTHANUM;
D O I
10.1016/j.commatsci.2022.111965
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Molecular dynamics (MD) simulation is employed for exploring the coordination of atoms in peralkaline BaOAl2O3-SiO2 glasses of variable Gd3+ doping concentrations between 1 and 3.8 mol% Gd2O3. For this the MD simulation procedure of inherent structure sampling was used which provides statistically robust information on the local atomic surrounding of the doped rare earth ions. Distributions of Si/Al/Ba/Gd cations in the first, second and third coordination spheres are investigated. Special focus is laid on the effect of Gd3+ doping concentration on the local surrounding of the Gd3+ ions, i. e. rare earth clustering, and general glass structure. The simulations show that Si-O-Al bonds are preferred in comparison to Si-O-Si and Al-O-Al connections with respect to the random model predictions. Deviations from a statistical Si/Al distribution around the BaOp and GdOq polyhedra are observed. The network modifier ions are preferably surrounded by other network modifier ions, rather than by network formers. It is shown that the incorporation of Gd does not affect radial distribution functions, cumulative radial distribution function curves and the coordination sphere of Gd for Gd2O3 doping concentrations of up to 3.8 mol%, i.e. no rare earth clustering is observed. However, increasing Gd2O3 concentrations decrease the number of bridging oxygen and increase the number of non-bridging oxygen (NBO) species in the glass structure. Charge compensation of the additional non-bridging oxygen species is achieved by increasing NBO coordination numbers with Ba2+.
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页数:10
相关论文
共 62 条
[1]   Selecting reliable interatomic potentials for classical molecular dynamics simulations of glasses: The case of amorphous SiO2 [J].
Afify, N. D. ;
Mountjoy, G. ;
Haworth, R. .
COMPUTATIONAL MATERIALS SCIENCE, 2017, 128 :75-80
[2]   Molecular-dynamics modeling of Eu3+-ion clustering in SiO2 glass [J].
Afify, N. D. ;
Mountjoy, G. .
PHYSICAL REVIEW B, 2009, 79 (02)
[3]   ALUMINUM OR PHOSPHORUS CO-DOPING EFFECTS ON THE FLUORESCENCE AND STRUCTURAL-PROPERTIES OF NEODYMIUM-DOPED SILICA GLASS [J].
ARAI, K ;
NAMIKAWA, H ;
KUMATA, K ;
HONDA, T ;
ISHII, Y ;
HANDA, T .
JOURNAL OF APPLIED PHYSICS, 1986, 59 (10) :3430-3436
[4]   Tb3+ as a probe for the molecular structure of mixed barium magnesium alumino silicate glasses [J].
Assadi, A. A. ;
Herrmann, A. ;
Tewelde, M. ;
Damak, K. ;
Maalej, R. ;
Ruessel, C. .
JOURNAL OF LUMINESCENCE, 2018, 199 :384-390
[5]   Structural, vibrational, and elastic properties of a calcium aluminosilicate glass from molecular dynamics simulations: The role of the potential [J].
Bauchy, M. .
JOURNAL OF CHEMICAL PHYSICS, 2014, 141 (02)
[6]   A simple transferable adaptive potential to study phase separation in large-scale xMgO-(1-x)SiO2 binary glasses [J].
Bidault, Xavier ;
Chaussedent, Stephane ;
Blanc, Wilfried .
JOURNAL OF CHEMICAL PHYSICS, 2015, 143 (15)
[7]  
Blasse G., 1994, A General Introduction to Luminescent Materials, P1, DOI 10.1007/978-3-642-79017-1_1
[8]   Structure of Strontium Aluminosilicate Glasses from Molecular Dynamics Simulation, Neutron Diffraction, and Nuclear Magnetic Resonance Studies [J].
Charpentier, Thibault ;
Okhotnikov, Kirill ;
Noyikov, Alexey N. ;
Hennet, Louis ;
Fischer, Henry E. ;
Neuville, Daniel R. ;
Florian, Pierre .
JOURNAL OF PHYSICAL CHEMISTRY B, 2018, 122 (41) :9567-9583
[9]   Sodium ion migration mechanisms in silicate glasses probed by molecular dynamics simulations [J].
Cormack, AN ;
Du, J ;
Zeitler, TR .
JOURNAL OF NON-CRYSTALLINE SOLIDS, 2003, 323 (1-3) :147-154
[10]  
Cormier L, 2021, Encyclopedia of materials: Technical ceramics and glasses, V496, DOI [10.1016/b978-0-12-818542-1.00076-x, DOI 10.1016/B978-0-12-818542-1.00076-X]