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In the spectrum of basic bismuth nitrate , these vibrations are represented by a broad , smeared band typical of a strong hydrogen bond [ 6 ] . In the Raman spectrum , these bands are masked by the background . 1800-1600 cm - 1 .
In the spectrum of basic bismuth nitrate , these vibrations are represented by a broad , smeared band typical of a strong hydrogen bond [ 6 ] . In the Raman spectrum , these bands are masked by the background . 1800-1600 cm - 1 .
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In the Raman spectrum , the band at 420 cm - 1 is replaced by two bands of much lower intensity . ... a single band belonging to a fully symmetric stretching vibra- tion v1 of the NO ion is found ( instead of the two bands observed in ...
In the Raman spectrum , the band at 420 cm - 1 is replaced by two bands of much lower intensity . ... a single band belonging to a fully symmetric stretching vibra- tion v1 of the NO ion is found ( instead of the two bands observed in ...
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As the degree of molybdenum oxidation increases , the intensity of the d - like band A decreases , because the ... In addi- tion to the redistribution of intensity between bands A and B , the spectra shift toward higher energies .
As the degree of molybdenum oxidation increases , the intensity of the d - like band A decreases , because the ... In addi- tion to the redistribution of intensity between bands A and B , the spectra shift toward higher energies .
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HighTemperature Superconductors | 675 |
LiquidPhase Sintering of Superconducting YBa₂Cu3O Ceramics | 687 |
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absorption According acid addition analysis angles anion atoms bands bismuth bonds calculated cations Chem chemical Chemistry cm-¹ complex composition compounds concentration constant containing coordination Copyright corresponding crystal curve decrease dependence described determined diagram distances effect electronic equilibrium exhibit experimental Figure follows formation frequencies H₂O heat hydrogen increase indicate initial Inorganic intensity interaction ions Khim leads ligand materials measured melt metal method mixture molecules Moscow Neorg nitrate Note observed obtained Original oxide oxygen parameters phase physical physicochemical position possible precipitate prepared present properties Publishing range ratio reaction REFERENCES region respectively Russian salts samples Sciences shift shows similar sodium solid solutions solubility solutions space group spectra spectrum stability structure studied synthesis Table temperature thermal tion transition Translation values various vibrations X-ray diffraction