Structures by: Kanzaki M.
Total: 37
CO2-rich melanophlogite treated at 1000 C 24H
O108Si46
Journal of Mineralogical and Petrological Sciences (2020) 115, 471-478
a=13.3619(4)Å b=13.3619(4)Å c=13.3619(4)Å
α=90.000000° β=90.000000° γ=90.000000°
CO2-rich melanophlogite treated at 500 C 5 min
C8O108Si46
Journal of Mineralogical and Petrological Sciences (2020) 115, 471-478
a=13.3849(3)Å b=13.3849(3)Å c=13.3849(3)Å
α=90.000000° β=90.000000° γ=90.000000°
CO2-rich melanophlogite
C8O108Si46
Journal of Mineralogical and Petrological Sciences (2020) 115, 471-478
a=13.3890(4)Å b=13.3890(4)Å c=13.3890(4)Å
α=90.000000° β=90.000000° γ=90.000000°
AlPO4 moganite beta phase
AlO4P
Journal of Petrological and Mineralogical Sciences (2018) 113, 126-134
a=9.06820Å b=4.89040Å c=10.97930Å
α=90° β=90° γ=90°
AlPO4 moganite alpha phase
AlO4P
Journal of Petrological and Mineralogical Sciences (2018) 113, 126-134
a=8.78020Å b=4.90870Å c=10.91910Å
α=90° β=90.33000° γ=90°
Zn2GeO4 tetragonal spinel
GeO4Zn2
Journal of Petrological and Mineralogical Sciences (2018) 113, 41-46
a=5.93787(2)Å b=5.93787(2)Å c=8.25629(4)Å
α=90° β=90° γ=90°
Zn2GeO4 cubic spinel
GeO4Zn2
Journal of Petrological and Mineralogical Sciences (2018) 113, 41-46
a=8.35436(7)Å b=8.35436(7)Å c=8.35436(7)Å
α=90° β=90° γ=90°
Zn2SiO4 modified spinel
O4SiZn2
Journal of Petrological and Mineralogical Sciences (2018) 113, 41-46
a=5.73982(6)Å b=11.50723(13)Å c=8.39608(9)Å
α=90° β=90° γ=90°
Dft optimized protoenstatite
MgO3Si
Journal of Petrological and Mineralogical Sciences (2017) 112, 359-364
a=9.2732Å b=8.7266Å c=5.3217Å
α=90° β=90° γ=90°
MgSiO3 protoenstatite
MgO3Si
Journal of Petrological and Mineralogical Sciences (2017) 112, 359-364
a=9.25655(9)Å b=8.73919(9)Å c=5.31939(5)Å
α=90° β=90° γ=90°
Low-pressure CaAl0.5Si0.5O2.75 phase model1
Al0.5CaO2.75Si0.5
Physics and Chemistry of Minerals (2017) 44, 717-733
a=9.1372(2)Å b=5.22418(11)Å c=17.5119(4)Å
α=90° β=100.0114(8)° γ=90°
Low-pressure CaAl0.4Si0.6O2.8 phase
Al0.4CaO2.8Si0.6
Physics and Chemistry of Minerals (2017) 44, 717-733
a=9.036(2)Å b=5.18766(12)Å c=21.6291(5)Å
α=90° β=97.9987(9)° γ=90°
Zn2SiO4 IV
O4SiZn2
Physics and Chemistry of Minerals (2013) 40, 467-478
a=10.9179(4)Å b=9.6728(4)Å c=6.1184(2)Å
α=90° β=90° γ=90°
Zn2SiO4 III
O4SiZn2
Physics and Chemistry of Minerals (2013) 40, 467-478
a=10.2897(5)Å b=6.6711(3)Å c=5.0691(2)Å
α=90° β=90° γ=90°
CaSiO3 cubic perovskite
CaO3Si
Geophysical Research Letters (1991) 18, 463-466
a=3.564(1)Å b=3.564(1)Å c=3.564(1)Å
α=90° β=90° γ=90°
MgSiO3 low-clinoenstatite
MgO3Si
Journal of Petrological and Mineralogical Sciences (2017) 112, 359-364
a=9.61327(13)Å b=8.82246(8)Å c=5.17455(6)Å
α=90° β=108.331(1)° γ=90°
Aluminum orthophosphate
AlO4P
Acta Crystallographica Section B (2011) 67, 1 30-40
a=6.13280(10)Å b=7.51510(10)Å c=8.58010(10)Å
α=98.2630(7)° β=104.6220(8)° γ=102.1398(8)°
Aluminum orthophosphate
AlO4P
Acta Crystallographica Section B (2011) 67, 1 30-40
a=6.13219(6)Å b=14.34650(10)Å c=8.57620(9)Å
α=90.0° β=104.7426(5)° γ=90.0°
AlPO4 moganite
Al3P3O12
Inorganic Chemistry (2012) 51, 6164-6172
a=8.7438(1)Å b=4.85855(7)Å c=10.8602(2)Å
α=90° β=90.1276(9)° γ=90°
Ca(Fe3+0.4Si0.6)O2.8
CaFe0.4O2.8Si0.6
Journal of the Ceramic Society of Japan (2020) 128, 843-846
a=9.2727(2)Å b=5.27291(11)Å c=21.9357(5)Å
α=90.000000° β=97.8775(10)° γ=90.000000°
Topaz-OH
Al0.68H0.68O2Si0.32
American Mineralogist (2010) 95, 1349-1352
a=4.72318Å b=8.91480Å c=2.77276Å
α=90° β=90° γ=90°
Mg4O12Si4
Mg4O12Si4
American Mineralogist (1989) 74, 509-512
a=11.501Å b=11.501Å c=11.480Å
α=90° β=90° γ=90°
Phase-E
H0.533Mg0.338OSi0.193
Physics and Chemistry of Minerals (1993) 19, 357-360
a=2.9701Å b=2.9701Å c=13.882Å
α=90° β=90° γ=120°
Phase-E
H0.603Mg0.361OSi0.169
Physics and Chemistry of Minerals (1993) 19, 357-360
a=2.9853Å b=2.9853Å c=13.9482Å
α=90° β=90° γ=120°
Phase-F
Mg0.78O3Si1.06
Physics and Chemistry of Minerals (1995) 22, 295-299
a=5.073Å b=5.073Å c=14.013Å
α=90° β=90° γ=120°
CaO5Si2
CaO5Si2
Physics and Chemistry of Minerals (1998) 25, 429-433
a=7.243Å b=7.546Å c=6.501Å
α=81.43° β=84.82° γ=69.60°