Structures by: Desgardin G.
Total: 34
Trititanium rubidium niobium oxide
NbO9RbTi3
Annales de Chimie (Paris) (Vol=Year) (1979) 1979, 339-346
a=6.407Å b=3.797Å c=14.918Å
α=90° β=90° γ=90°
Lead titanium tantalum oxide (1.2/0.4/1.6/6)
O6Pb1.2Ta1.6Ti0.4
Revue de Chimie Minerale (1971) 8, 139-143
a=10.54Å b=10.54Å c=10.54Å
α=90° β=90° γ=90°
SODIUM BARIUM TITANIUM OXIDE (1.7/.5/5.9/13)
Ba0.45Na1.7O13Ti5.85
Materials Research Bulletin (1979) 14, 267-272
a=15.183Å b=3.783Å c=9.143Å
α=90° β=98.7° γ=90°
THALLIUM TANTALUM TITANIUM OXIDE
O5TaTiTl
Materials Research Bulletin (1979) 14, 1125-1131
a=6.444(4)Å b=3.801(1)Å c=18.86(1)Å
α=90° β=90° γ=90°
BISMUTH CADMIUM TANTALUM OXIDE (0.4/1.7/1.9/7)
Bi0.4Cd1.733O7Ta1.867
Materials Research Bulletin (1974) 9, 1321-1332
a=10.421Å b=10.421Å c=10.421Å
α=90° β=90° γ=90°
Gadolinium tantalum tungsten oxide (0.3/0.9/0.1/3)
Gd0.29O3Ta0.87W0.13
Journal of Inorganic and Nuclear Chemistry (1972) 34, 509-516
a=3.869Å b=7.737Å c=3.858Å
α=90° β=90° γ=90°
Gadolinium tantalum tungsten oxide (0.1/0.2/0.8/3)
Gd0.07O3Ta0.21W0.79
Journal of Inorganic and Nuclear Chemistry (1972) 34, 509-516
a=5.326Å b=5.383Å c=3.786Å
α=90° β=90° γ=90°
Potassium titanium niobium oxide (0.9/0.9/1.2/5)
K0.85Nb1.15O5Ti0.85
Journal of Solid State Chemistry (1980) 31, 321-328
a=6.474Å b=3.8Å c=18.765Å
α=90° β=90° γ=90°
Rubidium titanium niobium oxide (0.9/0.9/1.2/5)
Nb1.15O5Rb0.85Ti0.85
Journal of Solid State Chemistry (1980) 31, 321-328
a=6.499Å b=3.812Å c=19.36Å
α=90° β=90° γ=90°
Thallium titanium niobium oxide (.9/.9/1.1/5)
Nb1.1O5Ti0.9Tl0.9
Journal of Solid State Chemistry (1980) 31, 321-328
a=6.457Å b=3.799Å c=18.919Å
α=90° β=90° γ=90°
Niobium rubidium titanium oxide (6/2/1/18)
Nb6O18Rb2Ti
Journal of Solid State Chemistry (1977) 22, 101-111
a=7.529(4)Å b=7.529(4)Å c=8.194(8)Å
α=90° β=90° γ=120°
Rubidium tantalum titanium oxide (2/6/1/18)
O18Rb2Ta6Ti
Journal of Solid State Chemistry (1977) 22, 101-111
a=7.512(4)Å b=7.512(4)Å c=8.231(8)Å
α=90° β=90° γ=120°
Caesium tantalum titanium oxide (2/6/1/18)
Cs2O18Ta6Ti
Journal of Solid State Chemistry (1977) 22, 101-111
a=7.513(4)Å b=7.513(4)Å c=8.227(8)Å
α=90° β=90° γ=120°
Caesium niobium titanium oxide (2/6/1/18)
Cs2Nb6O18Ti
Journal of Solid State Chemistry (1977) 22, 101-111
a=7.533(4)Å b=7.533(4)Å c=8.189(8)Å
α=90° β=90° γ=120°
Potassium titanium niobium oxide
KNbO5Ti
Journal of Solid State Chemistry (1980) 31, 321-328
a=6.447Å b=3.797Å c=18.431Å
α=90° β=90° γ=90°
Rubidium titanium niobium oxide
NbO5RbTi
Journal of Solid State Chemistry (1980) 31, 321-328
a=6.472Å b=3.814Å c=18.943Å
α=90° β=90° γ=90°
Thallium titanium niobium oxide
NbO5TiTl
Journal of Solid State Chemistry (1980) 31, 321-328
a=6.456Å b=3.806Å c=18.844Å
α=90° β=90° γ=90°
Potassium titanium tantalum oxide
KO5TaTi
Journal of Solid State Chemistry (1980) 31, 321-328
a=6.437Å b=3.797Å c=18.474Å
α=90° β=90° γ=90°
Rubidium titanium tantalum oxide
O5RbTaTi
Journal of Solid State Chemistry (1980) 31, 321-328
a=6.451Å b=3.812Å c=19.Å
α=90° β=90° γ=90°
RUBIDIUM TRITITANIUM NIOBIUM OXIDE
NbO9RbTi3
Annales de Chimie (Paris) (Vol=Year) (1979) 1979, 339-346
a=6.407Å b=3.797Å c=14.918Å
α=90° β=90° γ=90°
Titanium hexatantalum dithallium oxide
O18Ta6TiTl2
Materials Research Bulletin (1978) 13, 621-626
a=7.524(4)Å b=7.524(4)Å c=8.259(8)Å
α=90° β=90° γ=120°
Dithallium hexatantalum titanium oxide
O18Ta6TiTl2
Materials Research Bulletin (1978) 13, 621-626
a=7.524(4)Å b=7.524(4)Å c=8.259(8)Å
α=90° β=90° γ=120°
Titanium hexaniobium dithallium oxide
Nb6O18TiTl2
Materials Research Bulletin (1978) 13, 621-626
a=7.537(4)Å b=7.537(4)Å c=8.224(8)Å
α=90° β=90° γ=120°
Titanium hexaniobium dithallium oxide
Nb6O18TiTl2
Materials Research Bulletin (1978) 13, 621-626
a=7.537(4)Å b=7.537(4)Å c=8.224(8)Å
α=90° β=90° γ=120°
BISMUTH ZINC TANTALUM OXIDE (1.5/1/1.5/7)
Bi1.5O7Ta1.5Zn
Materials Research Bulletin (1974) 9, 1321-1332
a=10.54Å b=10.54Å c=10.54Å
α=90° β=90° γ=90°
Tripotassium pentatitanium niobium oxide
K3NbO14Ti5
Journal of Solid State Chemistry (1980) 35, 200-206
a=18.371(6)Å b=3.794(1)Å c=9.199(3)Å
α=90° β=101.21(4)° γ=90°
Tripotassium pentatitanium tantalum oxide
K3O14TaTi5
Journal of Solid State Chemistry (1980) 35, 200-206
a=18.363(2)Å b=3.791(1)Å c=9.174(1)Å
α=90° β=101.28(1)° γ=90°
Trirubidium pentatitanium niobium oxide
NbO14Rb3Ti5
Journal of Solid State Chemistry (1980) 35, 200-206
a=19.073(7)Å b=3.814(1)Å c=9.223(4)Å
α=90° β=100.93(4)° γ=90°
RUBIDIUM TUNGSTEN OXIDE (21.8/32.7/108)
O108Rb21.79W32.74
Journal of Solid State Chemistry (1979) 27, 145-151
a=15.966Å b=15.966Å c=10.099Å
α=90° β=90° γ=90°
Gd0.58O4Ta1.74W0.26
Gd0.58O4Ta1.74W0.26
Journal of Inorganic and Nuclear Chemistry (1972) 34, 509-516
a=3.869Å b=7.737Å c=3.858Å
α=90° β=90° γ=90°
O3Pb0.6Ta0.8Ti0.2
O3Pb0.6Ta0.8Ti0.2
Revue de Chimie Minerale (1971) 8, 139-143
a=10.54Å b=10.54Å c=10.54Å
α=90° β=90° γ=90°
K1.5O7Ta0.5Ti2.5
K1.5O7Ta0.5Ti2.5
Journal of Solid State Chemistry (1980) 35, 200-206
a=18.363Å b=3.791Å c=9.174Å
α=90° β=101.28° γ=90°
K1.5Nb0.5O7Ti2.5
K1.5Nb0.5O7Ti2.5
Journal of Solid State Chemistry (1980) 35, 200-206
a=18.371Å b=3.794Å c=9.199Å
α=90° β=101.21° γ=90°
Nb0.5O7Rb1.5Ti2.5
Nb0.5O7Rb1.5Ti2.5
Journal of Solid State Chemistry (1980) 35, 200-206
a=19.073Å b=3.814Å c=9.223Å
α=90° β=100.93° γ=90°