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Общее количество найденных документов : 37
Показаны документы с 1 по 20 |
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1.
| Synthesis of mullite precursors in molten salts. Influence of the molten alkali nitrate and additives/L. Saadi [et al.] // Journal of the European Ceramic Society, 1999. т.V. 19,N N 4.-С.517-520
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2.
| Large-scale synthesis of Pb1-xLaxTiO3 ceramic powders by molten salt method /Cai Zongying [et al.] // Journal of Alloys and Compounds, 2006. т.V. 420,N N 1-2.-С.273-277
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3.
| Molten salt synthesis (MSS) of Cu2Mo6S8-New way for large-scale production of Chevrel phases /E. Lancry [et al.] // Journal of Solid State Chemistry , 2006. т.V. 179,N N 6.-С.1879 - 1882
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4.
| Studies on some ternary oxyborates of the Na2O_Me2O3_B2O3 (Me=rare earth or aluminum) systems: Synthesis, structure and crystal growth /P. Peshev [et al.] // Journal of Solid State Chemistry, 2006. т.V. 179,N N. 9.-С.2834 - 2849
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5.
| Synthesis of Various LaMO3 Perovskites in Molten Carbonates/T. Kojima [et al.] // Journal of the American Ceramic Society, 2006. т.V. 89,N N 12.-С.3610-3616
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6.
| Molten salt synthesis of anisometric Sr3Ti2O7 particles/Li Zhiyou, Zhang Xiaoyong, Hou Junfeng, Zhou Kechao // Journal of Crystal Growth, 2007. т.Vol. 305,N № 1.-С.265-270
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7.
| Mechanism of the cathode process in the electrochemical synthesis of titanium diboride electrolytes/V. I. Tarenenko [et al.] // Electrochim. Acta, 1992. т.V 37,N N 2.-С.263-268
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8.
| Friedman T.L. Electrochemistry in Molten Hydroxides: Synthesis of NaCuO2/T. L. Friedman, A. M. Stacy // J. Solid State Chem, 1994. т.109, 1, 203-204
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9.
| Lagergren C. Synthesis and performance of LiCoO2 cathodes for the molten carbonate fuel cell (MCFC)/C. Lagergren, Bergman B. Lundblad A. // J. Electrochem. Soc, 1994. т.141, 11, 2959-2966
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10.
| Mishra B. Synthesis of Al-Cu-Be alloy by molten salt electrolysis/B. Mishra, D. L. Olson // Process Fabr. Adv. Mater. III, Proc. Symp. 3rd, 1993. т.239-256
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11.
| Strukova G.K. Synthesis of HTSC materials in the ammonium nitrate melt/G. K. Strukova, Shekhtman V. Sh. Zver'kova I.I. // Prog. High Temp. Supercond, 1992. т.32, 775-780
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12.
| Elder S.H. Synthesis and structural characterization of Na3WO3N/S. H. Elder, Parise J. B. DiSalvo F.J. // Report 1994, Rept. No. TR-18; Order No. AD-A275243, 24pp (Eng). Avail NTIS From Gov. Rep. Announce. Index. (U.S.), 1994. т.94, 10, Abstr.,N No427,758
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13.
| Xu K. Synthesis and characterization of lithium sulfonates as components of molten salt electrolytes/K. Xu, C. A. Angell // Electrochim. Acta, 1995. т.40, 13-14, 2401-2403
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14.
| McCarthy T. Synthesis in molten alkali metal polythiophosphate fluxes. The new quaternary bismuth and antimony thiophophates ABiP2S7 (A = K, Rb), A3M(PS4)2 (A = K, Rb, Cs; M = Sb, Bi), Cs3Bi2(PS4)3, and Na0.16Bi1.28P2S6/T. McCarthy, M. G. Kanatzidis // J. Alloys and Compounds, 1996. т.236, 1-2, 70-85
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15.
| Kononov A. High-temperature electrochemical synthesis and properties of intermetallic compounds of the Ni-Sc system. Pert 1. Electrochemical behavior of Sc(III) in chloride - fluoride melts/A. Kononov, E. Polyakov // J. Alloys and Compounds, 1996. т.239, 2, 103-106
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16.
| Kononov A.I. High-temperature electrochemical synthesis and properties of intermetallic compounds in the Ni-Sc system. Part 2. Thermodynamic and mechanical properties/A. I. Kononov, E. G. Polyakov // J. Alloys and Compounds, 1996. т.239, 2, 107-110
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17.
| Ito Y. Molten-salt synthesis of Ba1-xPbxTiO3 in the system BaTiO3-PbCl2/Y. Ito, Inagaki M. Shimada S. // J. Amer. Ceram. Soc, 1995. т.78, 10, 2695-2699
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18.
| MacKay R. RbMn4(AsO4)3: Molten-Salt Synthesis, Structure, and Magnetic Properties of a New Manganeese(II) Arsenate/R. MacKay, Hwu S. -J. Wardojo T.A. // J. Solid State Chem, 1996. т.125, 2, 255-260
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19.
| Tang H.Y. Electrochemical Synthesis of Superconducting EuBa2Cu3O7-x from Low-Temperature Molten Salt/H. Y. Tang, Lee C. S. Hshu H.Y. // J. Electrochem. Soc, 1997. т.144, 1, 16-20
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20.
| Synthesis of hollandite-type LixMnO2 by Li+ ion-exchange in molten salt and lithium insertion characteristics/Yoshihiro Kadoma [и др.] // Electrochimica Acta , 2007. т.Vol. 53,N № 4.-С.1696-1702
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