Russian Journal of Inorganic Chemistry, Tập 41,Số phát hành 5-8British Library Lending Division with the cooperation of the Royal Society of Chemistry, 1996 |
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... prepared by coprecipitation of oxalates or carbonates , while SrLaGaO4 can be prepared only by cryochemical technique . The patterns of thermal decomposition of the coprecipitated oxalates and carbonates and the starting nitrate mixture ...
... prepared by coprecipitation of oxalates or carbonates , while SrLaGaO4 can be prepared only by cryochemical technique . The patterns of thermal decomposition of the coprecipitated oxalates and carbonates and the starting nitrate mixture ...
Trang 894
... prepared and some high - T , superconductors Pair Mismatch , % SrLaAlO4 - YBCO ( 123 ) 1.6-3.0 SrLaGaO4 - YBCO ( 123 ) 0.34-0.75 SrNdAlO4 - YBCO ( 123 ) 2.4-3.7 SrLaAlO4 - BSCCO ( 2212 ) 1.5 SrLaGaO4 - BSCCO ( 2212 ) 0.7 SINDAIO4 ...
... prepared and some high - T , superconductors Pair Mismatch , % SrLaAlO4 - YBCO ( 123 ) 1.6-3.0 SrLaGaO4 - YBCO ( 123 ) 0.34-0.75 SrNdAlO4 - YBCO ( 123 ) 2.4-3.7 SrLaAlO4 - BSCCO ( 2212 ) 1.5 SrLaGaO4 - BSCCO ( 2212 ) 0.7 SINDAIO4 ...
Trang 1123
... prepared and characterized by 31P NMR . H3PM012040 heteropolyacid ( HPA ) decomposes upon thermolysis by two routes : ( i ) to form MoO3 and I ( at ~ 400 ° C ) and ( ii ) through the anhydride phase PM012038.5 to form MoO3 and II ( at ...
... prepared and characterized by 31P NMR . H3PM012040 heteropolyacid ( HPA ) decomposes upon thermolysis by two routes : ( i ) to form MoO3 and I ( at ~ 400 ° C ) and ( ii ) through the anhydride phase PM012038.5 to form MoO3 and II ( at ...
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HighTemperature Superconductors | 683 |
Synthesis of Crystalline Bismuth Oxide by Hydrolysis of Bismuth Ethoxide | 695 |
Yankin Yu V Golikov R G Zakharov O A Vikhreva I N Dubrovina and V F Balakirev | 703 |
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absorption according acid addition analysis angles anions atoms band bismuth bond calculated carbon cations cell changes chelate Chem chemical Chemistry cm-¹ complexes components composition compounds concentration containing coordination Copyright corresponding crystals curves cycles decomposition decrease dependence described determined diagram distances effect electron elements energy experimental formation fragments glass heating hydrogen increase indicates initial Inorganic intensity interaction ions Journal Khim layers ligand materials measured melt metal method mixture molecules Moscow Neorg Note observed obtained occurs oxidation oxygen parameters peritectic phase positions powder prepared present properties Publishing range ratio reaction REFERENCES region respectively Russian salt samples Sciences shows similar solid solutions solubility space group spectra spectrum stability structure studied synthesis Table temperature thermal tion transition Translation unit values vibrations X-ray diffraction