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  • Inorganic Chemistry  (1)
  • Key words Framework complex zirconium phosphates  (1)
  • Solid-State Physics  (1)
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  • 1
    ISSN: 1433-075X
    Keywords: Key words Framework complex zirconium phosphates ; Metastable cubic phase ; Mechanochemical activation ; Hydrothermal synthesis
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Abstract  High-power ball mill activation of the mixture of hydrated zirconium and lanthanum salts (oxonitrates, oxochlorides) with ammonium phosphate followed by hydrothermal treatment at temperatures not exceeding 200°C and a nearly neutral pH was found to yield crystalline dispersed phase of a cubic NH4Zr2(PO4)3 type along with admixtures of disordered orthorhombic compounds of a zirconium orthophosphate type. In the same conditions and at the same Zr/P ratio, hydrothermal treatment of gels obtained by reacting mixed zirconium and lanthanum nitrates solutions with ammonium phosphates yields no crystalline products, and only treatment in acid media generates a phase of the α-ZrPO4(OH) type coexisting with the NH4Zr2(PO4)3 phase if polyethylene oxide is present. X-ray powder diffraction, transmission electron microscopy, 31MAS-NMR, FTIRS and thermal analysis were applied to elucidate factors affecting crystallization of complex zirconium phosphates in the hydrothermal conditions. The most essential factor appears to be generation of some nuclei of zirconium phosphates under high pressures developed in the course of mixed solids mechanical activation. These nuclei are embedded into matrix of such well-crystallized solid products as ammonium nitrate or chloride. Hence, metastable cubic or orthorhombic structure of the phases obtained via mechanical activation route can be assigned to the nuclei-matrix orientation relationship. Due to easily scaled-up synthesis procedure, these results appear to be very promising for manufacturing of dispersed framework zirconium phosphates as acid catalysts or fast proton conductors.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Zeitschrift für anorganische Chemie 276 (1954), S. 275-288 
    ISSN: 0044-2313
    Keywords: Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Die binären Systeme Cr2O3—H2O, Sc2O3—H2O und Tl2O3—H2O wurden an Hand gutbekannter hydrothermaler Methoden studiert, die es ermöglichten, Gesetzmäßigkeiten innerhalb der Phasengleichgewichte zu ermitteln.Im System Cr2O3—H2O konnten die drei stabilen Phasen Cr(OH)3, CrO(OH) und Cr2O3 bestätigt und ihre Stabilitätsbereiche als eine Funktion von Druck und Temperatur bestimmt werden.Eine Verbindung der Formel Sc(OH)3 wurde nicht aufgefunden. Die Struktur des ScO(OH) ließ sich dem Diaspor-Typ zuordnen, seine Gleichgewichtskurve bei der Zersetzung zu Sc2O3 wurde festgelegt.Es konnte bestätigt werden, daß Tl2O3 keinerlei Hydrate zu bilden vermag.Die Strukturen von Oxyden, Oxydhydroxyden und Hydroxyden dreiwertiger Elemente wurden miteinander verglichen und in schematischer Form dargestellt.
    Additional Material: 5 Ill.
    Type of Medium: Electronic Resource
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  • 3
    Publication Date: 2004-12-03
    Description: High pressure synthetic diamonds have now been a commercial product for over 40 years. Russian scientists invented the chemical vapor deposition (CVD) process 30 years ago, while the Japanese followed 10 years later and the U.S. was introduced to it 10 years after that. The new syntheses focus is on liquid and solid phase approaches. There are three CVD processes: microwave plasma, hot filament, and oxy-acetylene torch. The oxy-acetylene torch is an excellent materials synthesis lab experiment, emphasizing the simplicity of the science.
    Keywords: Solid-State Physics
    Type: National Educators' Workshop: Update 95. Standard Experiments in Engineering Materials Science and Technology; 277-288; NASA-CP-3330
    Format: text
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