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Synthesis of Strontium Borophosphate, SrBPO5 by Solid State and Hydrothermal Methods and Characterisation

A. Baykal, M. Kızılyallı, G. Gözel, Rüdiger Kniep

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Abstract

SrBPO5 was synthesized by a solid-state reaction reported and by a new solid state reaction using BPO4 as a phosphating agent. It was also obtained by a hydrothermal method. The structure of the compound was solved by Rietveld analysis before. The examination of X-ray powder diffraction data showed that, SrBPO5 is isostructural with CaBPO5 and BaBPO5. It crystallizes in the trigonal system in P3121 and the refined unit cell parameters are a = 6.8488(1), c = 6.8159(2) Å, Z=3 and Dm 3.77 g/cm3.

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What this paper is about

SrBPO5 was synthesized by a solid-state reaction reported and by a new solid state reaction using BPO4 as a phosphating agent. It was also obtained by a hydrothermal method. The structure of the compound was solved by Rietveld analysis before. The examination of X-ray powder diffraction data showed that, SrBPO5 is isostructural with CaBPO5 and BaBPO5. It crystallizes in the trigonal system in P3121 and the refined unit cell parameters are a = 6.8488(1), c = 6.8159(2) Å, Z=3 and Dm 3.77 g/cm3.

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Available abstract

SrBPO5 was synthesized by a solid-state reaction reported and by a new solid state reaction using BPO4 as a phosphating agent. It was also obtained by a hydrothermal method. The structure of the compound was solved by Rietveld analysis before. The examination of X-ray powder diffraction data showed that, SrBPO5 is isostructural with CaBPO5 and BaBPO5. It crystallizes in the trigonal system in P3121 and the refined unit cell parameters are a = 6.8488(1), c = 6.8159(2) Å, Z=3 and Dm 3.77 g/cm3.

Key concepts: Isostructural, Hydrothermal circulation, Strontium, Solid-state, Rietveld refinement, Hydrothermal synthesis, Trigonal crystal system, Powder diffraction

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