𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Synthesis and X-ray Powder Diffraction Study of New Phosphates in the Cu3(PO4)2–Sr3(PO4)2 System: Sr1.9Cu4.1(PO4)4, Sr3Cu3(PO4)4, Sr2Cu(PO4)2, and Sr9.1Cu1.4(PO4)7

✍ Scribed by A.A. Belik; A.P. Malakho; B.I. Lazoryak; S.S. Khasanov


Publisher
Elsevier Science
Year
2002
Tongue
English
Weight
742 KB
Volume
163
Category
Article
ISSN
0022-4596

No coin nor oath required. For personal study only.

✦ Synopsis


New phosphates, Sr1.9Cu4.1(PO4)4, Sr2Cu(PO4)2, and Sr9.1Cu1.4(PO4)7, were found in the Cu3(PO4)2+Sr3(PO4)2 system at 9003C under air. Sr1.9Cu4.1(PO4)4 crystallizes in an orthorhombic system with a ‫؍‬ 15.3695(7) A > , b ‫؍‬ 10.3652(4) A > , and c ‫؍‬ 7.9425(4) A > . Crystal structures of Sr9.1Cu1.4(PO4)7, Sr2Cu(PO4)2, and the known phase, Sr3Cu3(PO4)4, were re5ned by the Rietveld method from X-ray di4raction data: space group R3 m, a ‫؍‬ 10.6119(1) A > , c ‫؍‬ 19.7045(2) A > , and Z ‫؍‬ 3 for Sr9.1Cu1.4(PO4)7; space group C2/m, a ‫؍‬ 11.5155(1) A > , b ‫؍‬ 5.07543(6) A > , c ‫؍‬ 6.57487(7) A > , ‫؍‬ 106.3563(6)3, and Z ‫؍‬ 2 for Sr2Cu(PO4)2; and space group P21/c, a ‫؍‬ 9.2010( 1) A > , b ‫؍‬ 4.94104(4) A > , c ‫؍‬ 17.8998(3) A > , ‫؍‬ 122.8952(9)3, and Z ‫؍‬ 2 for Sr3Cu3(PO4)4. A second-harmonic generation study con-5rmed that the structures of all four compounds have the center of symmetry. Sr3Cu3(PO4)4 is isotypic with Ca3Cu3(PO4)4. Copper cations in Sr3Cu3(PO4)4 have square planar and trigonal bipyramidal coordination and strontium cations have octahedral and ninefold coordination. Sr2Cu(PO4)2 is isotypic with Ba2Cu(PO4)2. Copper cations in Sr2Cu(PO4)2 have square planar coordination and strontium cations have ninefold coordination. Sr9.1Cu1.4(PO4)7 is structurally related to -Ca3(PO4)2 and Sr3(PO4)2. A portion of copper cations in Sr9.1Cu1.4(PO4)7 fully occupies the trigonal-distorted octahedral site M5. The structure of Sr9.1Cu1.4(PO4)7 has some disordered elements: (1) strontium cations in the M3 site statistically occupy four positions near the center of symmetry; (2) orientation disordering of the P1O4 tetrahedra is observed; (3) the M4 site is occupied by 0.05Sr 2؉ ؉ 0.2Cu 2 ؉ ؉ 0.75ᮀ; and (4) copper cations in the M4 site are slightly displaced from the threefold axis with distances between positions about 0.94 A > . Formation of solid solutions Sr9.1 ؊ xCaxCu1.4(PO4)7 (04x49.1), Sr2 ؊ xBaxCu(PO4)2 (04x42), and Sr3 ؊ xBaxCu3(PO4)4 (04x41.5) was shown.


📜 SIMILAR VOLUMES


Sr3Cu3(PO4)4, Pb3Cu3(PO4)4, BaCu2(PO4)2·
✍ H Effenberger 📂 Article 📅 1999 🏛 Elsevier Science 🌐 English ⚖ 432 KB

The four Cu(II)-phosphates(V) Sr 3 Cu 3 (PO 4 ) 4 , Pb 3 Cu 3 (PO 4 ) 4 , BaCu 2 (PO 4 ) 2 • H 2 O, and Ba 2 Cu(PO 4 ) 2 • H 2 O were synthesized under hydrothermal conditions. Their structures were determined from single-crystal X-ray diffraction data. They are related to a group of compounds forme

Synthesis and Characterization of New St
✍ A.A. Belik; B.I. Lazoryak; K.V. Pokholok; T.P. Terekhina; I.A. Leonidov; E.B. Mi 📂 Article 📅 2001 🏛 Elsevier Science 🌐 English ⚖ 671 KB

New strontium iron(II) orthophosphates, SrFe 2 (PO 4 ) 2 and Sr 9 Fe 1.5 (PO 4 ) 7 , were synthesized by the solid state method at 1170 K. They were characterized by X-ray powder di4raction, thermal analysis in air, magnetic susceptibility, and the IR and MoK ssbauer spectroscopy methods. MoK ssbaue

Synthesis and Structure of Cu1.35Fe3(PO4
✍ T.E. Warner; W. Milius; J. Maier 📂 Article 📅 1993 🏛 Elsevier Science 🌐 English ⚖ 424 KB

The first example of a phase in the copper-iron-phosphorus-oxygen quaternary system \(\left(\mathrm{Cu}^{1}, \mathrm{Cu}^{1 \mathrm{l}}\right)_{1.35}\) \(\left(\mathrm{Fe}^{\mathrm{II}}, \mathrm{Fe}^{\mathrm{III}}\right)_{3}\left(\mathrm{PO}_{4}\right)_{3}\), has been prepared by a high temperature

Whitlockite-Related Phosphates Sr9A(PO4)
✍ A.A. Belik; F. Izumi; T. Ikeda; M. Okui; A.P. Malakho; V.A. Morozov; B.I. Lazory 📂 Article 📅 2002 🏛 Elsevier Science 🌐 English ⚖ 437 KB

Five phosphates, Sr 9 A(PO 4 ) 7 (A=Sc, Cr, Fe, Ga, and In), were synthesized by the solid state method at (1270 to 1420) K and characterized by X-ray powder diffraction, infrared spectroscopy, differential scanning calorimetry, thermogravimetry, and second-harmonic generation (SHG). SHG showed Sr 9