Extraction of reliable bond distances and angles for Ca10(VxP1-xO4)6F2 apatites using standard Rietveld refinement with Cu K(alpha) X-ray powder data was significantly impaired by large imprecision for the O-atom coordinates. An initial attempt to apply crystal-chemical Rietveld refinements to the same compounds was partly successful, and exposed the problematic determination of two oxygen\u8211metal\u8211oxygen angles. Ab initio modeling with VASP in space groups P63/m, P21/m and Pm showed that both these angular parameters exhibited a linear dependence with the vanadium content. Stable crystal-chemical Rietveld refinements in agreement with quantum results were obtained by fixing these angles at the values from ab initio simulations. Resi...
The apatite-type compound Ba5(AsO4)3Cl, pentabarium tris[arsenate(V)] chloride, has been synthesize...
The X-ray structure of ammonium decavanadate hexahydrate was redetermined at a low temperature (100 ...
Y6Cr4+xAl43−x (x = 2.57); space group P63/mcm, a = 10.8601(1) Å, c = 17.6783(3) Å, V= 1805.7(1) Å3, ...
Extraction of reliable bond distances and angles for Ca10(VxP1-O4)6F2 apatites using ...
In this paper it is demonstrated that precise crystallographic information can be extracted from the...
To help design apatites with specific structural and crystal-chemical characteristics, an experiment...
The title compound, Ca2+xNd8–x(SiO4)6O2–0.5x (x = 0.49), was synthesized at 1873 K and rapidly quenc...
[AI]4[AII]6(BO4)6X2 apatites can flexibly accommodate numerous cationic, metalloid and anionic subst...
Natural and synthetic apatite-type materials have applications in geochronology, catalysis, environm...
In this paper, we present a combined experimental and theoretical study to disclose, for the first t...
A script developed for crystal-chemical Rietveld refinement of P63/m apatite with TOPAS was implemen...
Lead-containing (Pb-B-X)-2H apatites encompass a number of [AF ]4[AT ]6[(BO4)6]X 2 compounds used fo...
Apatites commonly adopt P63/m hexagonal symmetry. More rarely, monoclinic chemical analogues have be...
Structure determination by powder X-ray diffraction data has gone through a recent surge since it ha...
The apatites are an important group of minerals ; isotypes have been synthesized that include substi...
The apatite-type compound Ba5(AsO4)3Cl, pentabarium tris[arsenate(V)] chloride, has been synthesize...
The X-ray structure of ammonium decavanadate hexahydrate was redetermined at a low temperature (100 ...
Y6Cr4+xAl43−x (x = 2.57); space group P63/mcm, a = 10.8601(1) Å, c = 17.6783(3) Å, V= 1805.7(1) Å3, ...
Extraction of reliable bond distances and angles for Ca10(VxP1-O4)6F2 apatites using ...
In this paper it is demonstrated that precise crystallographic information can be extracted from the...
To help design apatites with specific structural and crystal-chemical characteristics, an experiment...
The title compound, Ca2+xNd8–x(SiO4)6O2–0.5x (x = 0.49), was synthesized at 1873 K and rapidly quenc...
[AI]4[AII]6(BO4)6X2 apatites can flexibly accommodate numerous cationic, metalloid and anionic subst...
Natural and synthetic apatite-type materials have applications in geochronology, catalysis, environm...
In this paper, we present a combined experimental and theoretical study to disclose, for the first t...
A script developed for crystal-chemical Rietveld refinement of P63/m apatite with TOPAS was implemen...
Lead-containing (Pb-B-X)-2H apatites encompass a number of [AF ]4[AT ]6[(BO4)6]X 2 compounds used fo...
Apatites commonly adopt P63/m hexagonal symmetry. More rarely, monoclinic chemical analogues have be...
Structure determination by powder X-ray diffraction data has gone through a recent surge since it ha...
The apatites are an important group of minerals ; isotypes have been synthesized that include substi...
The apatite-type compound Ba5(AsO4)3Cl, pentabarium tris[arsenate(V)] chloride, has been synthesize...
The X-ray structure of ammonium decavanadate hexahydrate was redetermined at a low temperature (100 ...
Y6Cr4+xAl43−x (x = 2.57); space group P63/mcm, a = 10.8601(1) Å, c = 17.6783(3) Å, V= 1805.7(1) Å3, ...