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  • Crystal structure  (1)
  • Phosphorus nitrides  (1)
  • Wiley-Blackwell  (2)
  • Nature Publishing Group
  • 1995-1999  (2)
  • 1
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 1998 (1998), S. 469-476 
    ISSN: 1434-1948
    Keywords: Cage compounds ; Crystal structure ; Hafnium ; Trimetaphosphimates ; Zirconium ; Chemistry ; General Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: The (trimetaphosphimato)hafnates and -zirconates Na4{Hf4(μ4-O)(μ-OH)6[(PO2NH)3]4} · 18 H2O [1, Pa3, a = 22.687(3) Å, Z = 8], Na4{Hf4(μ4-O)(μ-OH)6[(PO2NH)3]4} · 21 H2O [2, R3, a = 14.350(2), c = 50.348(10) Å, Z = 6], Na4{Zr4(μ4-O)(μ-OH)6[(PO2NH)3]4} · 18 H2O [3, Pa3, a = 22.693(3) Å, Z = 8], and Na4{Zr4(μ4-O)(μ-OH)6[(PO2NH)3]4} · 21 H2O [4, R3¯, a = 14.303(2), c = 50.284(10) Å, Z = 6] were obtained by the stoichiometric reaction of HfOCl2 · 8 H2O and ZrOCl2 · 8 H2O with an aqueous solution of Na3(PO2NH)3 · 4 H2O, followed by the diffusion-controlled addition of methanol. During these reactions compounds 1 and 2, or 3 and 4, crystallized simultaneously and the hafnium and zirconium complexes 1 and 3, as well as 2 and 4, were found to be isostructural and isomorphous. The characteristic structural feature which is central to 1, 2, 3, and 4 is the complex tetranuclear anion {M4(μ4-O)(μ-OH)6[(PO2NH)3]4}4- with M = Zr or Hf. The anion consists of five corner-sharing adamantanoid cages. The central cage, {M4(μ4-O)(μ-OH)6}8+, has a tetracoordinated oxygen atom in the middle, and the other cages are formed by the trimetaphosphimate ions acting as tridentate ligands which coordinate to Hf or Zr. The water content of the compounds 1-4 could not be determined unequivocally by chemical analyses since the compounds are always obtained as mixtures of the rhombohedral (2/4) and cubic (1/3) phases. Thermal decomposition of compounds 1-4 starts above 120°C and leads to the formation of HfP2O7 and ZrP2O7/NaZr2(PO4)3, with the evolution of H2O and NH3. DSC measurements gave no evidence that the compounds 1 and 2, or 3 and 4, might be transformed into each other by heating.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 0044-2313
    Keywords: Phosphorus nitrides ; nitrido sodalites ; transition metals ; synthesis ; structure ; i.r. data ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Nitrido-Sodalites. II. Synthesis, Crystal Structure, and Properties of M(6+(y/2)-x)H2x[P12N24]Zy with M = Fe, Co, Ni, Mn; Z = Cl, Br, I; 0 ≤ x ≤ 4; y ≤ 2The nitrido sodalites M(6+(y/2)-x)H2x[P12N24]Zy with M = Fe, Co, Ni, Mn; Z = Cl, Br, I; 0 ≤ x ≤ 4; y ≤ 2 are obtained by the reaction of HPN2 or [PN(NH2)2]3 with the metal halogenide MZ2 (T = 700°C). The compounds are isotypic to Zn(7-x)H2x[P12N24]Cl2. An increase of the ionic radii of the cations or anions results in an expansion of the lattice which is caused by an increase of the P—N—P angle. The influence of the cation is more dominant than that of the anion. By reacting [PN(NH2)2]3 with metal halogenide (MZ2) hydrogen free, X-ray amorphous products are obtained. The formation of the chloride-containing P—N-sodalite in this reaction begins at temperatures below 450°C.
    Notes: Die Nitrido-Sodalithe M(6+(y/2)-x)H2x[P12N24]Zy mit M = Fe, Co, Ni, Mn; Z = Cl, Br, I; 0 ≤ x ≤ 4; y ≤ 2 wurden durch Umsetzung von HPN2 bzw. von [PN(NH2)2]3 mit dem jeweiligen Metallhalogenid MZ2 hergestellt (T = 700°C). Sie sind mit Zn(7-x)H2x[P12N24]Cl2 isotyp. Mit steigendem Ionenradius von Kationen oder Anionen findet man eine Aufweitung des Volumens. Dies ist mit einer Vergrößerung des P—N—P-Winkels verbunden. Der Einfluß der Kationen ist dabei stärker als jener der Anionen. Durch Reaktion von [PN(NH2)2]3 mit dem jeweiligen Metallhalogenid MZ2 werden wasserstofffreie P—N-Sodalithe als röntgenamorphe Pulver erhalten. Bei diesen Reaktionen setzt die Bildung der chlorhaltigen P—N-Sodalithe schon unterhalb von 450°C ein.
    Additional Material: 4 Ill.
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