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Ultralow thermal expansion in the Cs-Ln-Zr and M-Hf phosphates (Ln = Pr, Sm, Gd; M = Na, K, Rb, Cs)ORLOVA, A. I; KAZANTSEV, G. N; SAMOILOV, S. G et al.High Temperatures. High Pressures (Print). 1999, Vol 31, Num 1, pp 105-111, issn 0018-1544Conference Paper

Chemical preparations and crystal data for eight new condensed phosphatesTRIDANE, M; BELAAOUAD, S; SBAI, K et al.Solid state sciences. 2000, Vol 2, Num 7, pp 701-704, issn 1293-2558Article

Luminescence of whitlockite-like phosphates excited with synchrotron radiation: II. Luminescence of Ca9M'M(PO4)7 :Eu3+ (M' = Ca, Mg; M = Li, Na, K)ROMANENKO, A. Yu; MOROZOV, V. A; YANOV, O. V et al.Inorganic materials. 1999, Vol 35, Num 7, pp 730-736, issn 0020-1685Article

Effect of variation of framework composition on the thermal expansivity of NZP phasesGOVINDAN KUTTY, K. V; ASUVATHRAMAN, R; MATHEWS, C. K et al.Materials research bulletin. 1994, Vol 29, Num 10, pp 1009-1016, issn 0025-5408Article

Thermal expansion studies on the sodium zirconium phosphate family of compounds A1/2M2 (PO4)3 : effect of interstitial and framework cationsGOVINDAN KUTTY, K. V; ASUVATHRAMAN, R; SRIDHARAN, R et al.Journal of materials science. 1998, Vol 33, Num 15, pp 4007-4013, issn 0022-2461Article

Li intercalation studies on AFeMP3O12SUGANTHA, M; VARADARAJU, U. V; SMART, L. E et al.Solid state ionics. 1997, Vol 99, Num 1-2, pp 79-84, issn 0167-2738Article

Propriétés magnétiques de phosphates et silicophosphates de titane = Magnetic properties of titanium phosphates and titanium silicophosphatesBENMOUSSA, A; MICHEL, C.Annales de chimie (Paris. 1914). 1999, Vol 24, Num 3, pp 233-240, issn 0151-9107Article

Synthetic magnesium sodium hydrogen monophosphate : MgNa3H(PO4)2KAWAHARA, A; YAMAKAWA, J; YAMADA, T et al.Acta crystallographica. Section C, Crystal structure communications. 1995, Vol 51, pp 2220-2222, issn 0108-2701, 11Article

Na3M(OH)(HPO4)(PO4), M = Al, Ga : Two phosphates with a chain structureLII, K.-H; WANG, S.-L.Journal of solid state chemistry (Print). 1997, Vol 128, Num 1, pp 21-26, issn 0022-4596Article

New titanium-vanadium phosphates of Nasicon and langbeinite structures, and differences between the two structures toward deintercalation of alkali metalKASTHURI RANGAN, K; GOPALAKRISHNAN, J.Journal of solid state chemistry (Print). 1994, Vol 109, Num 1, pp 116-121, issn 0022-4596Article

Structure features and ionic conductivity of the AM4(PO4)3 orthophosphates : (A = Na, K, Rb; M = Ni, Mn)DAIDOUH, A; PICO, C; VEIGA, M. L et al.Solid state ionics. 1999, Vol 124, Num 1-2, pp 109-117, issn 0167-2738Article

New copper phosphates with the NASICON or alluaudite-type structures as ionic or mixed conductorsWARNER, T. E; MILIUS, W; MAIER, J et al.Solid state ionics. 1994, Vol 74, Num 3-4, pp 119-123, issn 0167-2738Article

Synthesis of new network phosphates with NZP structureBUVANESWARI, G; VARADARAJU, U. V.Journal of solid state chemistry (Print). 1999, Vol 145, Num 1, pp 227-234, issn 0022-4596Article

Specific heats of rare-earth ions in crystalline and glassy phosphate matricesCARINI, G; D'ANGELO, G; TRIPODO, G et al.Philosophical magazine. B. Physics of condensed matter. Statistical mechanics, electronic, optical and magnetic properties. 1998, Vol 77, Num 2, pp 449-455, issn 1364-2812Conference Paper

Whitlockite-related phosphates Sr9A(PO4)7(A=Sc, Cr, Fe, Ga, and In): Structure refinement of Sr9In(PO4)7 with synchrotron X-ray powder diffraction dataBELIK, A. A; IZUMI, F; IKEDA, T et al.Journal of solid state chemistry (Print). 2002, Vol 168, Num 1, pp 237-244, issn 0022-4596, 8 p.Article

Investigation of phase evolution during the formation of calcium potassium sodium orthophosphateNIU JINLONG; ZHANG ZHENXI; JIANG DAZONG et al.Materials chemistry and physics. 2003, Vol 78, Num 2, pp 308-312, issn 0254-0584, 5 p.Article

Preparation and electrical behaviour of photoluminiscent[photoluminescent] intercalation compounds of thionine in layered phosphatesRODRIGUEZ-CASTELLON, E; JIMENEZ-LOPEZ, A; OLIVERA-PASTOR, P et al.Solid state ionics. 1997, Vol 97, Num 1-4, pp 217-222, issn 0167-2738Conference Paper

Synthesis and characterization of M1/3Nb5/3(PO4)3 (M = Mg, Mn, Co, Ni, Cu or Zn) compounds with the sodium zirconium phosphate framework structurePET'KOV, V. I; ORLOVA, A. I; SUKHANOV, M. V et al.Journal of materials science letters. 2002, Vol 21, Num 6, pp 513-516, issn 0261-8028Article

Synthesis and X-ray data of M(TiCr)P3O12, Cu(I)Ti2P3O12 and Cu(I)1+2xZr2-xCu(II)xP3O12-xBREVAL, E; AGRAWAL, D. K.Journal of materials science letters. 1999, Vol 18, Num 13, pp 1015-1017, issn 0261-8028Article

Powder neutron diffraction studies of three low thermal expansion phases in the NZP family : K0.5Nb0.5Ti1.5(PO4)3, Ba0.5Ti2(PO4)3 and Ca0.25Sr0.25Zr2(PO4)3WOODCOCK, D. A; LIGHTFOOT, P; SMITH, R. I et al.Journal of material chemistry. 1999, Vol 9, Num 10, pp 2631-2636, issn 0959-9428Article

Damage and annealing of potassium titanyl phosphate after Er+ and Yb+ implantationKE-MIN WANG; BO-RONG SHI; HONG-YING ZHAI et al.Solid state communications. 1994, Vol 92, Num 12, pp 997-999, issn 0038-1098Article

The dissociation of NZP (Ca0.5Sr0.5Zr4P6O24) during plasma sprayingTRICE, R. W; BREWER, L. N; FABER, K. T et al.Scripta materialia. 2000, Vol 42, Num 9, pp 855-860, issn 1359-6462Article

Preparation and crystal structure of Na2Zn(HPO4)2.4H2O, a new layered sodium zinc phosphate containing bifurcated tetrahedral 12-ringsHARRISON, W. T. A; NENOFF, T. M; GIER, T. E et al.Journal of solid state chemistry (Print). 1994, Vol 113, Num 1, pp 168-175, issn 0022-4596Article

Structure and site-symmetry investigation on the hexagonal KCaY(PO4)2SHAOLONG TIE; QIANG SU; AQIN YU et al.Journal of alloys and compounds. 1995, Vol 227, Num 1, pp 1-4, issn 0925-8388Article

Optical properties of Tb3+ in the diphosphate CsYP2O7AKRIM, A; ZAMBON, D; COUSSEINS, J. C et al.Journal of alloys and compounds. 1994, Vol 207-08, pp 99-101, issn 0925-8388Conference Paper

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