Structures by: Brugger J.
Total: 28
(Mn19.50 Mg4.44) (V2.38 As1.12 Si2.76) O27.3 (O H)21.3
As1.12Mg4.44Mn19.5O45.6Si2.76V2.38
American Mineralogist (2001) 86, 1494-1505
a=8.259Å b=8.259Å c=204.3Å
α=90° β=90° γ=120°
Cesbronite
Cu3O8TeH4
Acta Crystallographica Section B (2018) 74, 1 24-31
a=2.93172(16)Å b=11.8414(6)Å c=8.6047(4)Å
α=90° β=90° γ=90°
(1-Ethyl-4,7-bis(ethylguanidinium)-1,4,7-triazacyclononane)copper(II) perchlorate
C14H33CuN9,2(ClO4)
Inorganic Chemistry (2011) 50, 621-635
a=16.4966(7)Å b=9.0232(4)Å c=15.8392(6)Å
α=90.00° β=92.891(2)° γ=90.00°
(1-(4-Guanidinobutyl)-1,4,7-triazacyclononane)copper(II)perchlorate
C11H27Cl2CuN6,Cl
Inorganic Chemistry (2012) 51, 939-953
a=13.418(2)Å b=7.4563(15)Å c=17.265(4)Å
α=90.00° β=90.00° γ=90.00°
(1-(3-Guanidinopropyl)-1,4,7-triazacyclononane)copper(II)perchlorate
2(C10H25Cl2CuN6),CH4O,2(Cl)
Inorganic Chemistry (2012) 51, 939-953
a=11.7286(9)Å b=23.2621(19)Å c=13.0701(11)Å
α=90.00° β=92.504(2)° γ=90.00°
Pseudojohannite
Cu2.937H26O34S2U4
American Mineralogist (2012) 97, 1796-1803
a=8.6744Å b=8.8692Å c=10.0090Å
α=72.105° β=70.544° γ=76.035°
Maghrebite
Al2As2H18MgO18
European Journal of Mineralogy (2012) 24, 717-726
a=5.4363Å b=10.500Å c=7.075Å
α=97.701° β=110.295° γ=102.021°
Leucostaurite
B10Cl2H2O19Pb4
American Mineralogist (2012) 97, 1206-1212
a=11.376Å b=11.505Å c=6.5568Å
α=90° β=90° γ=90°
Argandite
As0.54H8Mn6.72O16V1.46
American Mineralogist (2011) 96, 1894-1900
a=5.5038Å b=12.2665Å c=10.1055Å
α=90° β=95.559° γ=90°
Plinerite
Al0.24Fe5.6H6O18P3Zn1.16
Mineralogical Magazine (2009) 73, 131-148
a=13.865Å b=16.798Å c=5.151Å
α=90° β=90° γ=90°
Edwardsite
Cd1.89Cu3H22.02O18S2Zn0.11
Mineralogical Magazine (2010) 74, 39-53
a=10.863Å b=13.129Å c=11.169Å
α=90° β=113.04° γ=90°
Birchite
Cd2Cu2H10O17P2S
American Mineralogist (2008) 93, 910-917
a=10.4768Å b=20.8938Å c=6.1640Å
α=90° β=90° γ=90°
Bouazzerite
As18Bi6Co0.24Fe14H176Mg10.76O174
American Mineralogist (2007) 92, 1630-1639
a=13.6322Å b=30.469Å c=18.4671Å
α=90° β=91.134° γ=90°
Pizgrischite
Bi17Cu14.77Fe0.23PbS35
The Canadian Mineralogist (2007) 45, 1229-1245
a=35.095Å b=3.9067Å c=43.222Å
α=90° β=96.71° γ=90°
Tripuhyite
Fe0.47O2Sb0.53
Mineralogical Magazine (2003) 67, 31-46
a=4.625Å b=4.625Å c=3.059Å
α=90° β=90° γ=90°
Tripuhyite
Fe0.53O2Sb0.47
Mineralogical Magazine (2003) 67, 31-46
a=4.6433Å b=4.6433Å c=3.0815Å
α=90° β=90° γ=90°
Nabiasite
As0.618BaH2Mn9O26V5.382
European Journal of Mineralogy (1999) 11, 879-890
a=12.832Å b=12.832Å c=12.832Å
α=90° β=90° γ=90°
Krettnichite
H2Mn2O10Pb0.83Sr0.17V2
European Journal of Mineralogy (2001) 13, 145-158
a=9.2953Å b=6.2894Å c=7.6906Å
α=90° β=118.068° γ=90°
Turtmannite
As6.72Mg26.64Mn119O291.6Si16.56V14.28
American Mineralogist (2001) 86, 1494-1505
a=8.259Å b=8.259Å c=204.3Å
α=90° β=90° γ=120°
Fianelite
As0.38H4Mn2O9V1.62
American Mineralogist (1996) 81, 1270-1276
a=7.809Å b=14.554Å c=6.705Å
α=90° β=93.27° γ=90°
Cabalzarite
Al0.816As2CaFe0.354H3Mg0.784Mn0.046O10
American Mineralogist (2000) 85, 1307-1314
a=8.925Å b=6.143Å c=7.352Å
α=90° β=115.25° γ=90°
Cabalzarite
Al0.84As2CaFe0.08H3Mg0.82Mn0.26O10
American Mineralogist (2000) 85, 1307-1314
a=8.9284Å b=6.1314Å c=7.3439Å
α=90° β=115.494° γ=90°
Spriggite
H7.79O25Pb3U6
American Mineralogist (2004) 89, 339-347
a=28.355Å b=11.990Å c=13.998Å
α=90° β=104.248° γ=90°
Scheuchzerite
H4Mg0.63Mn8.57Na0.8O32Si9V
American Mineralogist (2006) 91, 937-943
a=9.831Å b=10.107Å c=13.855Å
α=86.222° β=73.383° γ=71.987°
Manganlotharmeyerite
As2CaH5.18Mg0.34Mn1.18O10
The Canadian Mineralogist (2002) 40, 1597-1608
a=9.043Å b=6.2314Å c=7.3889Å
α=90° β=116.392° γ=90°
Marecottite
H57.2Mg2.16Mn0.84O68S4U8
American Mineralogist (2003) 88, 676-685
a=10.815Å b=11.249Å c=13.851Å
α=66.224° β=72.412° γ=69.955°
Ansermetite
H8MnO10V1.95
The Canadian Mineralogist (2003) 41, 1423-1431
a=13.171Å b=10.128Å c=6.983Å
α=90° β=111.572° γ=90°
Vergasovaite
Cu3Mo0.742O9S1.258
European Journal of Mineralogy (1999) 11, 101-110
a=7.421Å b=6.754Å c=13.624Å
α=90° β=90° γ=90°