Structures by: Pietzonka C.

Total: 24

2(C22H44N4Si4Zn)

2(C22H44N4Si4Zn)

Muller, I.Schneider, C.Pietzonka, C.Kraus, F.Werncke, C.G.

Inorganics (2019) 7, 117

a=18.8806(12)Å   b=18.0560(13)Å   c=17.6133(17)Å

α=90°   β=90°   γ=90°

0.25(C124H248K3Mn4N16O18Si16),0.25(C12H24KO6)

0.25(C124H248K3Mn4N16O18Si16),0.25(C12H24KO6)

Muller, I.Schneider, C.Pietzonka, C.Kraus, F.Werncke, C.G.

Inorganics (2019) 7, 117

a=34.8403(17)Å   b=18.4715(11)Å   c=14.5302(8)Å

α=90°   β=96.555(4)°   γ=90°

C22H44N4Si4Zn,C16H34KO7

C22H44N4Si4Zn,C16H34KO7

Muller, I.Schneider, C.Pietzonka, C.Kraus, F.Werncke, C.G.

Inorganics (2019) 7, 117

a=12.1899(7)Å   b=18.4365(10)Å   c=22.8273(13)Å

α=90°   β=95.423(2)°   γ=90°

C22H44FeN4Si4,2(C10H20K0.5O4)

C22H44FeN4Si4,2(C10H20K0.5O4)

Muller, I.Schneider, C.Pietzonka, C.Kraus, F.Werncke, C.G.

Inorganics (2019) 7, 117

a=10.8613(5)Å   b=13.2627(6)Å   c=19.8669(9)Å

α=77.5970(10)°   β=80.062(2)°   γ=83.452(2)°

C22H44CoN4Si4

C22H44CoN4Si4

Muller, I.Schneider, C.Pietzonka, C.Kraus, F.Werncke, C.G.

Inorganics (2019) 7, 117

a=18.7674(9)Å   b=18.1030(8)Å   c=17.5930(7)Å

α=90°   β=90°   γ=90°

C22H44CrN4Si4,C20H40KO8

C22H44CrN4Si4,C20H40KO8

Muller, I.Schneider, C.Pietzonka, C.Kraus, F.Werncke, C.G.

Inorganics (2019) 7, 117

a=11.6269(2)Å   b=21.5546(4)Å   c=21.8560(4)Å

α=95.633(2)°   β=89.8920(10)°   γ=90.377(2)°

C22H44CoN4Si4,2(C10H20K0.5O4)

C22H44CoN4Si4,2(C10H20K0.5O4)

Muller, I.Schneider, C.Pietzonka, C.Kraus, F.Werncke, C.G.

Inorganics (2019) 7, 117

a=10.8097(5)Å   b=13.2648(6)Å   c=19.9051(10)Å

α=77.712(2)°   β=80.199(2)°   γ=83.606(2)°

C127.5H128As4O4V8

C127.5H128As4O4V8

Elschenbroich, ChristophLu, FengHarms, KlausPietzonka, Clemens

CrystEngComm (2013) 15, 18 3525

a=34.1862(7)Å   b=20.4477(3)Å   c=34.3172(10)Å

α=90.00°   β=108.802(2)°   γ=90.00°

2(C48H57Cl2LiO3SnV3),C4H8O

2(C48H57Cl2LiO3SnV3),C4H8O

Elschenbroich, ChristophLu, FengBurghaus, OlavPietzonka, ClemensHarms, Klaus

Chemical communications (Cambridge, England) (2007) 30 3201-3203

a=11.6792(13)Å   b=13.139(2)Å   c=17.1370(19)Å

α=72.608(12)°   β=70.347(9)°   γ=85.839(12)°

C28H38CoIN3

C28H38CoIN3

Martin BröringSerguei PrikhodovskiCarsten D. BrandtEsther Cónsul TejeroSilke KöhlerClemens Pietzonka

Inorganic Chemistry (2007) 46, 917-925

a=10.5956(9)Å   b=11.6384(10)Å   c=12.4709(10)Å

α=110.4840(10)°   β=95.6760(10)°   γ=102.8990(10)°

C27H34CoN4O

C27H34CoN4O

Martin BröringSerguei PrikhodovskiCarsten D. BrandtEsther Cónsul TejeroSilke KöhlerClemens Pietzonka

Inorganic Chemistry (2007) 46, 917-925

a=11.0670(6)Å   b=10.6803(6)Å   c=20.8687(12)Å

α=90.00°   β=97.1480(10)°   γ=90.00°

C28H38CoN4O3

C28H38CoN4O3

Martin BröringSerguei PrikhodovskiCarsten D. BrandtEsther Cónsul TejeroSilke KöhlerClemens Pietzonka

Inorganic Chemistry (2007) 46, 917-925

a=10.926(2)Å   b=11.574(2)Å   c=11.876(2)Å

α=82.30(3)°   β=67.94(3)°   γ=88.86(3)°

C54H68Fe2N8O3

C54H68Fe2N8O3

Martin BröringSerguei PrikhodovskiCarsten D. BrandtEsther Cónsul TejeroSilke KöhlerClemens Pietzonka

Inorganic Chemistry (2007) 46, 917-925

a=18.9641(14)Å   b=14.0552(16)Å   c=19.4466(14)Å

α=90.00°   β=95.337(9)°   γ=90.00°

Ru9Sb8Zn7

Ru9Sb8Zn7

Ding-Bang XiongYufeng ZhaoNorihiko L. OkamotoClemens PietzonkaTakeshi WakiHaruyuki Inui

Inorganic Chemistry (2010) 49, 10536-10542

a=11.9062(14)Å   b=11.9062(14)Å   c=11.9062(14)Å

α=90.00°   β=90.00°   γ=90.00°

C27H34CoN4S

C27H34CoN4S

Martin BröringSerguei PrikhodovskiCarsten D. BrandtEsther Cónsul TejeroSilke KöhlerClemens Pietzonka

Inorganic Chemistry (2007) 46, 917-925

a=10.972(3)Å   b=11.257(2)Å   c=20.908(8)Å

α=90.00°   β=98.24(4)°   γ=90.00°

C36H32SnV2

C36H32SnV2

Elschenbroich, ChristophLu, FengNowotny, MathiasBurghaus, OlafPietzonka, ClemensHarms, Klaus

Organometallics (2007) 26, 16 4025

a=9.3888(11)Å   b=11.7664(15)Å   c=13.4341(16)Å

α=80.25(1)°   β=82.34(1)°   γ=78.30(1)°

C48H44Sn1V4

C48H44Sn1V4

Elschenbroich, ChristophLu, FengNowotny, MathiasBurghaus, OlafPietzonka, ClemensHarms, Klaus

Organometallics (2007) 26, 16 4025

a=13.7723(6)Å   b=16.9996(7)Å   c=18.7871(8)Å

α=83.322(3)°   β=69.348(3)°   γ=78.093(3)°

FeGeO3

FeGeO3

Redhammer, G. J.Senyshyn, A.Tippelt, G.Pietzonka, C.Treutmann, W.Roth, G.Amthauer, G.

American Mineralogist (2012) 97, 694-706

a=9.7840Å   b=9.1342Å   c=5.1924Å

α=90°   β=101.754°   γ=90°

FeGeO3

FeGeO3

Redhammer, G. J.Senyshyn, A.Tippelt, G.Pietzonka, C.Treutmann, W.Roth, G.Amthauer, G.

American Mineralogist (2012) 97, 694-706

a=9.7848Å   b=9.1369Å   c=5.1936Å

α=90°   β=101.764°   γ=90°

FeGeO3

FeGeO3

Redhammer, G. J.Senyshyn, A.Tippelt, G.Pietzonka, C.Treutmann, W.Roth, G.Amthauer, G.

American Mineralogist (2012) 97, 694-706

a=9.7993Å   b=9.1491Å   c=5.1991Å

α=90°   β=101.891°   γ=90°

FeGeO3

FeGeO3

Redhammer, G. J.Senyshyn, A.Tippelt, G.Pietzonka, C.Treutmann, W.Roth, G.Amthauer, G.

American Mineralogist (2012) 97, 694-706

a=9.7850Å   b=9.1324Å   c=5.1924Å

α=90°   β=101.751°   γ=90°

FeGeO3

FeGeO3

Redhammer, G. J.Senyshyn, A.Tippelt, G.Pietzonka, C.Treutmann, W.Roth, G.Amthauer, G.

American Mineralogist (2012) 97, 694-706

a=9.7838Å   b=9.1349Å   c=5.1929Å

α=90°   β=101.750°   γ=90°

FeGeO3

FeGeO3

Redhammer, G. J.Senyshyn, A.Tippelt, G.Pietzonka, C.Treutmann, W.Roth, G.Amthauer, G.

American Mineralogist (2012) 97, 694-706

a=9.7840Å   b=9.1338Å   c=5.1924Å

α=90°   β=101.753°   γ=90°

AuSTa5

AuSTa5

Harbrecht, B.Wagner, V.Pietzonka, C.

Journal of Solid State Chemistry (1998) 139, 45-51

a=12.5082Å   b=12.5082Å   c=12.5082Å

α=90.000°   β=90.000°   γ=90.000°