RT info:eu-repo/semantics/article T1 Determination of the high-pressure crystal structure of BaW O4 and PbW O4 A1 López Solano, Juan Javier A1 Errandonea, D. A1 Pellicer-Porres, J. A1 Manjón, F.J. A1 Segura, A. A1 Ferrer-Roca, Ch. A1 Kumar, R.S. A1 Tschauner, O. A1 Rodríguez Hernández, Plácida A1 Radescu Cioranescu, Silvana Elena A1 Múgica Fernaud, Andrés A1 Muñoz González, Alfonso A1 Aquilanti, G. A2 Ingeniería Industrial K1 high-pressure K1 crystal structure K1 BaWO4 K1 PbWO4 AB We report the results of both angle-dispersive x-ray diffraction and x-ray absorption near-edge structure studies in BaW O4 and PbW O4 at pressures of up to 56 GPa and 24 GPa, respectively. BaW O4 is found to undergo a pressure-driven phase transition at 7.1 GPa from the tetragonal scheelite structure (which is stable under normal conditions) to the monoclinic fergusonite structure whereas the same transition takes place in PbW O4 at 9 GPa. We observe a second transition to another monoclinic structure which we identify as that of the isostructural phases BaW O4 -II and PbW O4 -III (space group P 21 n). We have also performed ab initio total-energy calculations which support the stability of this structure at high pressures in both compounds. The theoretical calculations further find that upon increase of pressure the scheelite phases become locally unstable and transform displacively into the fergusonite structure. The fergusonite structure is, however, metastable and can only occur if the transition to the P 21 n phases were kinetically inhibited. Our experiments in BaW O4 indicate that it becomes amorphous beyond 47 GPa. YR 2006 FD 2006 LK http://riull.ull.es/xmlui/handle/915/41220 UL http://riull.ull.es/xmlui/handle/915/41220 LA en DS Repositorio institucional de la Universidad de La Laguna RD 26-abr-2025