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Pentafluoride, structure

Gold (continued) pentafluoride, structure, 27 103 peroxides, 6 343-344 phthalocyanine, preparation of, 7 64 polyhalogen complex of, 3 153 poly(pyrazolyl)borato alkyl derivatives, 42 320-321... [Pg.116]

X0 complexes, 39 255-265 oxohalides, 39 267-268 oxygen atom transfer, 37 340-341 oxygen donor ligands, 37 311-312 pentafluoride, structure, 27 102 phosphide-bridged complexes, 37 311 phthalocyanine... [Pg.221]

Pentafluorides, structures, 27 103-106 PentaOuoroorthoselenic acid, 24 214 Pentafluoroorthotelluric acid, 24 208, 211, 214 Pentafluoroselenium hypochlorite, 26 155 hypofluorite, 26 129-130 Pentafluorosulfanylalkanes, 41 128-129, 132-138... [Pg.228]

NQR, 22 216 olefin complexes of, 4 85 in organogermanium compounds, 27 141,143 oxyfluoride, properties of, 11 29 pentacarbonyl dimets of sulfur oxydifluoride imide, 19 203-205 pentafluoride, structure, 27 102 peroxides, 6 325-326 phthalocyanine, 7 54 physical properties of, 11 18 polysulfide complexes, 31 100, 102 envelope conformation, 31 115 synthesis, 31 103-104 [Pt[15]aneS5) f, 35 75, 77 reaction with fluorinated peroxides, 16 120 salts, lattice energy and thermochemistry, 22 52-56... [Pg.259]

The V—F—V angle of 150° in the vanadium pentafluoride structure lies between those for the niobium and rhodium compounds. Thus, the structure cannot be described in terms of either of the close-packed arrangements. Although in the structure some approach toward close-packed planes of fluorine atoms can be seen, a comparison of volume per formula unit for the pentafluorides shows that for the second and... [Pg.105]

A pseudo-octahedral MFs unit is a feature of all of the structures of crystalline metal pentafluorides examined so far. The MFs units are usualiy linked by a sharing of cis-related F atoms and the RhFs unit seen in [RhFs]4 is similar to units seen in the other pentafluoride structures. Since the averaged nonbridging M-F interatomic distances in (RhFs)4 are 1.808 (8) A whereas the averaged bridging M-F distances are 1.999 (4) A, we can safely assume that the former bonds are appreciably stronger than the latter. [Pg.335]


See other pages where Pentafluoride, structure is mentioned: [Pg.49]    [Pg.78]    [Pg.80]    [Pg.147]    [Pg.170]    [Pg.190]    [Pg.202]    [Pg.237]    [Pg.242]    [Pg.261]    [Pg.266]    [Pg.680]    [Pg.680]    [Pg.105]    [Pg.105]    [Pg.335]    [Pg.1326]    [Pg.1326]   
See also in sourсe #XX -- [ Pg.27 , Pg.102 , Pg.105 , Pg.106 ]




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Antimony pentafluoride polymeric structure

Antimony pentafluoride, structure

Chromium pentafluoride, structure

Iodine pentafluoride structure

Iridium pentafluoride, structure

Niobium pentafluoride, structure

Osmium pentafluoride, structure

Pentafluoride

Pentafluorides

Pentafluorides, structures

Pentafluorides, structures

Phosphorus pentafluoride Molecular structure

Phosphorus pentafluoride, structure

Platinum pentafluoride, structure

Rhenium pentafluoride, structure

Rhodium pentafluoride, structure

Ruthenium pentafluoride, structure

Tantalum pentafluoride, structure

The gas phase molecular structures of phosphorus pentafluoride and pentachloride

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