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Structural and optical properties of Ba3(Nb6−xTax)Si4O26(x= 0.6, 1.8, 3.0, 4.2, 5.4)
- Source :
- Powder Diffraction; December 2019, Vol. 34 Issue: 4 p331-338, 8p
- Publication Year :
- 2019
-
Abstract
- Structure and optical properties have been successfully determined for a series of niobium- and tantalum-containing layered alkaline-earth silicate compounds, Ba3(Nb6−xTax)Si4O26(x= 0.6, 1.8, 3.0, 4.2, 5.4). The structure of this solid solution was found to be hexagonal P-62m(No. 189), with Z= 1. With xincreases from 0.6 to 5.4, the lattice parameter aincreases from 8.98804(8) to 9.00565(9) Å and cdecreases from 7.83721(10) to 7.75212(12) Å. As a result, the volume decreases from 548.304(11) to 544.479(14) Å3. The (Nb/Ta)O6distorted octahedra form continuous chains along the c-axis. These (Nb/Ta)O6chains are in turn linked with the Si2O7groups to form distorted pentagonal channels in which Ba ions were found. These Ba2+ions have full occupancy and a 13-fold coordination environment with neighboring oxygen sites. Another salient feature of the structure is the linear Si–O–Si chains. When xin Ba3(Nb6−xTax)Si4O26increases, the bond valence sum (BVS) values of the Ba sites increase slightly (2.09–2.20), indicating the size of the cage becoming progressively smaller (over-bonding). While SiO cages are also slightly smaller than ideal (BVS range from 4.16 to 4.19), the (Nb/Ta)O6octahedral cages are slightly larger than ideal (BVS range from 4.87 to 4.90), giving rise to an under-bonding situation. The bandgaps of the solid solution members were measured between 3.39 and 3.59 eV, and the x= 3.0 member was modeled by density functional theory techniques to be 3.07 eV. The bandgaps of these materials indicate that they are potential candidates for ultraviolet photocatalyst.
Details
- Language :
- English
- ISSN :
- 08857156 and 19457413
- Volume :
- 34
- Issue :
- 4
- Database :
- Supplemental Index
- Journal :
- Powder Diffraction
- Publication Type :
- Periodical
- Accession number :
- ejs51625606
- Full Text :
- https://doi.org/10.1017/S0885715619000745