Structures by: Lachgar A.

Total: 57

K0.72 (Nb6 O2 Cl12)

Cl12K0.72Nb6O2

Anokhina, E.V.Day, C.S.Kauzlarich, S.M.Stroebele, M.Meyer, H.J.Lachgar, A.Whangbo MyunghwanKim, H.

Journal of Alloys Compd. (2002) 338, 218-228

a=6.7996Å   b=11.6246Å   c=12.3833Å

α=90°   β=101.181°   γ=90°

Rb0.74 (Nb6 O2 Cl12)

Cl12Nb6O2Rb0.74

Anokhina, E.V.Day, C.S.Meyer, H.J.Stroebele, M.Lachgar, A.Kim, H.Whangbo MyunghwanKauzlarich, S.M.

Journal of Alloys Compd. (2002) 338, 218-228

a=6.8008Å   b=11.6481Å   c=12.4809Å

α=90°   β=101.384°   γ=90°

In0.64 (Nb6 O2 Cl12)

Cl12In0.64Nb6O2

Anokhina, E.V.Day, C.S.Kim, H.Meyer, H.J.Stroebele, M.Whangbo MyunghwanKauzlarich, S.M.Lachgar, A.

Journal of Alloys Compd. (2002) 338, 218-228

a=6.7973Å   b=11.6257Å   c=12.4032Å

α=90°   β=101.153°   γ=90°

Cs0.94 (Nb6 O2 Cl12)

Cl12Cs0.94Nb6O2

Anokhina, E.V.Day, C.S.Meyer, H.J.Kim, H.Stroebele, M.Kauzlarich, S.M.Lachgar, A.Whangbo Myunghwan

Journal of Alloys Compd. (2002) 338, 218-228

a=6.7978Å   b=11.6895Å   c=12.6262Å

α=90°   β=101.634°   γ=90°

O14P2Sb3,3(K)

O14P2Sb3,3(K)

Y. PiffardA. LachgarM. Tournoux

Journal of Solid State Chemistry (1985) 58, 253-256

a=7.147(1)Å   b=7.147(1)Å   c=30.936(6)Å

α=90.°   β=90.°   γ=120.°

K2 (Sb P O6)

K2O6PSb

Lachgar, A.Deniard-Courant, S.Piffard, Y.

Journal of Solid State Chemistry (1986) 63, 409-413

a=9.429Å   b=5.891Å   c=11.03Å

α=90°   β=90°   γ=90°

K3 (Sb3 P2 O14) (H2 O)1.32

H2.64K3O15.32P2Sb3

Lachgar, A.Deniard-Courant, S.Piffard, Y.

Journal of Solid State Chemistry (1988) 73, 572-576

a=7.147Å   b=7.147Å   c=30.936Å

α=90°   β=90°   γ=120°

K5 (Sb5 P2 O20)

K5O20P2Sb5

Piffard, Y.Lachgar, A.Tournoux, M.

Materials Research Bulletin (1986) 21, 1231-1238

a=23.443Å   b=18.452Å   c=7.149Å

α=90°   β=90°   γ=90°

Tl2 V (Cl12 (Nb Cl)6)

Cl18Nb6Tl2V

Duraisamy, T.Qualls, J.S.Lachgar, A.

Journal of Solid State Chemistry (2003) 170, 227-231

a=9.1122Å   b=9.1122Å   c=25.178Å

α=90°   β=90°   γ=120°

Sr Fe3 (P O4)3 O

Fe3O13P3Sr

Morozov, V.A.Pokholok, K.V.Lazoryak, B.I.Lebedev, O.I.Lachgar, A.Malakho, A.P.van Tendeloo, G.

Journal of Solid State Chemistry (2003) 170, 411-417

a=7.5395Å   b=6.3476Å   c=10.3161Å

α=90°   β=99.74°   γ=90°

Cl26.51Cs1.78Nb12O8.14Ti3

Cl26.51Cs1.78Nb12O8.14Ti3

Anokhina, Ekaterina V.Day, Cynthia S.Lachgar, Abdessadek

Chemical Communications (2000) 16 1491

a=17.5459(17)Å   b=29.323(3)Å   c=9.1556(7)Å

α=90.00°   β=90.00°   γ=90.00°

C6H26Cl12N6Na4Nb6O13

C6H26Cl12N6Na4Nb6O13

Yan, BangboDay, Cynthia S.Lachgar, Abdessadek

Chemical Communications (2004) 21 2390-2391

a=14.2313(11)Å   b=14.2313(11)Å   c=19.413(2)Å

α=90.00°   β=90.00°   γ=90.00°

C10H16Cl12N10Nb6Zn2

C10H16Cl12N10Nb6Zn2

Yan, BangboDay, Cynthia S.Lachgar, Abdessadek

Chemical Communications (2004) 21 2390-2391

a=10.8914(10)Å   b=10.8914(10)Å   c=8.6850(17)Å

α=90.00°   β=90.00°   γ=120.00°

C73.33H74.07Cl12Mn4N14Nb6O13.7

C73.33H74.07Cl12Mn4N14Nb6O13.7

Zhang, Jian-JunDay, Cynthia S.Lachgar, Abdessadek

CrystEngComm (2011) 13, 1 133

a=12.606(3)Å   b=13.815(3)Å   c=14.013(3)Å

α=78.919(2)°   β=86.321(2)°   γ=87.030(2)°

Rb (Nb6 Cl15)

Cl15Nb6Rb

Naegele, A.Day, C.Lachgar, A.Meyer, H.J.

Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (42,1987-) (2001) 56, 1238-1240

a=17.8348Å   b=13.4135Å   c=9.2142Å

α=90°   β=90°   γ=90°

Rb1.13 Ti (Nb6 Cl18)

Cl18Nb6Rb1.13Ti

Naegele, A.Anokhina, E.V.Sitar, J.Lachgar, A.Meyer, H.J.

Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (42,1987-) (2000) 55, 139-144

a=9.163Å   b=9.163Å   c=25.014Å

α=90°   β=90°   γ=120°

Cs (Nb6 Cl15)

Cl15CsNb6

Naegele, A.Day, C.Lachgar, A.Meyer, H.J.

Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (42,1987-) (2001) 56, 1238-1240

a=17.8948Å   b=13.4397Å   c=9.2437Å

α=90°   β=90°   γ=90°

K0.77 (Nb6 Cl15)

Cl15K0.77Nb6

Naegele, A.Day, C.Meyer, H.J.Lachgar, A.

Zeitschrift fuer Naturforschung, Teil B. Anorganische Chemie, Organische Chemie (42,1987-) (2001) 56, 1238-1240

a=17.801Å   b=13.4143Å   c=9.2551Å

α=90°   β=90°   γ=90°

C26H13Mn2N6O11

C26H13Mn2N6O11

Wang, Yu-XianLi, Zhong-YiZhu, JiangWang, Xiao-QunXu, Ling-LingLachgar, AbdessadekZhang, Jian-Jun

CrystEngComm (2013) 15, 32 6395

a=18.871(13)Å   b=18.123(13)Å   c=14.501(10)Å

α=90.00°   β=95.280(9)°   γ=90.00°

C31H22Cu4N8O17

C31H22Cu4N8O17

Wang, Yu-XianLi, Zhong-YiZhu, JiangWang, Xiao-QunXu, Ling-LingLachgar, AbdessadekZhang, Jian-Jun

CrystEngComm (2013) 15, 32 6395

a=16.000(4)Å   b=21.411(5)Å   c=19.198(5)Å

α=90.00°   β=99.861(3)°   γ=90.00°

Niobium chloride

Cl18Nb6,K1,Y1

Duraisamy, ThirumalaiLachgar, Abdessadek

Acta Crystallographica Section C (2003) 59, 4 i27-i28

a=9.2527(6)Å   b=9.2527(6)Å   c=25.410(2)Å

α=90.00°   β=90.00°   γ=120.00°

Niobium chloride

Cl18K2Nb6Sr1

Duraisamy, ThirumalaiLachgar, Abdessadek

Acta Crystallographica Section C (2002) 58, 6 i85-i86

a=9.3025(8)Å   b=9.3025(8)Å   c=25.9412(18)Å

α=90.00°   β=90.00°   γ=120.00°

Gallium Phosphatooxalate

C16H41Ga6N4O41.5P6

Choi, CAnokhina, E VTaullelle, FZhao, YLachgar, A

Chemistry of Materials (2002)

a=9.0220(7)Å   b=9.1864(9)Å   c=13.4912(9)Å

α=73.988(9)°   β=79.199(7)°   γ=78.775(7)°

C24H56Cl12N10Nb6O2

C24H56Cl12N10Nb6O2

Huajun ZhouCynthia S. Day Abdessadek Lachgar

Chemistry of Materials (2004)

a=14.086(3)Å   b=20.057(4)Å   c=20.938(4)Å

α=90.00°   β=90.00°   γ=90.00°

C52H68Cl12Mn2N12Nb6O6

C52H68Cl12Mn2N12Nb6O6

Zhou, HuajunStrates, Konstantia C.Muñoz, Miguel Á.Little, Kevin J.Pajerowski, Daniel M.Meisel, Mark W.Talham, Daniel R.Lachgar, Abdessadek

Chemistry of Materials (2007) 19, 9 2238

a=13.1663(17)Å   b=23.426(3)Å   c=23.615(3)Å

α=90.00°   β=90.00°   γ=90.00°

C54H78Cl12Mn3N17Nb6O6

C54H78Cl12Mn3N17Nb6O6

Zhou, HuajunStrates, Konstantia C.Muñoz, Miguel Á.Little, Kevin J.Pajerowski, Daniel M.Meisel, Mark W.Talham, Daniel R.Lachgar, Abdessadek

Chemistry of Materials (2007) 19, 9 2238

a=26.465(5)Å   b=15.578(3)Å   c=21.870(4)Å

α=90.00°   β=111.31(3)°   γ=90.00°

C37.5H61Cl12MnN11Nb6O6

C37.5H61Cl12MnN11Nb6O6

Zhou, HuajunStrates, Konstantia C.Muñoz, Miguel Á.Little, Kevin J.Pajerowski, Daniel M.Meisel, Mark W.Talham, Daniel R.Lachgar, Abdessadek

Chemistry of Materials (2007) 19, 9 2238

a=11.791(2)Å   b=23.168(5)Å   c=25.506(5)Å

α=90.00°   β=103.17(3)°   γ=90.00°

C108H95Cl12FeMn6N24Nb6O17

C108H95Cl12FeMn6N24Nb6O17

Jianjun ZhangAbdessadek Lachgar

Journal of the American Chemical Society (2007) 129, 250-251

a=16.3466(18)Å   b=16.3466(18)Å   c=42.227(9)Å

α=90.00°   β=90.00°   γ=120.00°

Dititanium hexaniobium dodecaoxide

Nb6O12Ti2

Ekaterina V. AnokhinaMichael W. EssigCynthia S. DayAbdessadek Lachgar

Journal of the American Chemical Society (1999) 121, 6827-6833

a=7.9364(5)Å   b=7.9364(5)Å   c=14.4339(10)Å

α=90.00°   β=90.00°   γ=120.00°

C54H36Ba2Cl12N14Nb6O2

C54H36Ba2Cl12N14Nb6O2

Zhihua YanCynthia S. DayAbdessadek Lachgar

Inorganic Chemistry (2005) 44, 4499-4505

a=16.0571(12)Å   b=16.0628(12)Å   c=16.0614(12)Å

α=86.8300(10)°   β=64.3800(10)°   γ=67.8030(10)°

C78H64Ca2Cl12N18Nb6O8

C78H64Ca2Cl12N18Nb6O8

Zhihua YanCynthia S. DayAbdessadek Lachgar

Inorganic Chemistry (2005) 44, 4499-4505

a=12.609(4)Å   b=13.262(4)Å   c=16.645(5)Å

α=69.933(6)°   β=68.607(6)°   γ=63.522(5)°

C69.2H61Ca2Cl12N16Nb6O7

C69.2H61Ca2Cl12N16Nb6O7

Zhihua YanCynthia S. DayAbdessadek Lachgar

Inorganic Chemistry (2005) 44, 4499-4505

a=11.5499(6)Å   b=17.5305(8)Å   c=21.7842(10)Å

α=90.00°   β=100.8770(10)°   γ=90.00°

Cl11Nb3RbV

Cl11Nb3RbV

Thirumalai DuraisamyAbdessadek Lachgar

Inorganic Chemistry (2003) 42, 7747-7751

a=12.771(3)Å   b=6.8110(17)Å   c=17.183(3)Å

α=90.00°   β=90.00°   γ=90.00°

Cl11Nb3TlV

Cl11Nb3TlV

Thirumalai DuraisamyAbdessadek Lachgar

Inorganic Chemistry (2003) 42, 7747-7751

a=12.698(5)Å   b=6.798(3)Å   c=17.145(10)Å

α=90.00°   β=90.00°   γ=90.00°

C16H42Cl18N5Nb6

C16H42Cl18N5Nb6

Bangbo YanHuajun ZhouAbdessadek Lachgar

Inorganic Chemistry (2003) 42, 8818-8822

a=22.731(3)Å   b=9.1692(11)Å   c=23.901(3)Å

α=90.00°   β=109.906(9)°   γ=90.00°

C14H24Cl12MnN8Nb6

C14H24Cl12MnN8Nb6

Bangbo YanHuajun ZhouAbdessadek Lachgar

Inorganic Chemistry (2003) 42, 8818-8822

a=15.513(4)Å   b=15.513(4)Å   c=15.513(4)Å

α=90.00°   β=90.00°   γ=90.00°

C102H88Cl12Mn4N20Nb6O16

C102H88Cl12Mn4N20Nb6O16

Zhang, Jian-JunZhao, YueGamboa, Sergio AarónLachgar, Abdessadek

Crystal Growth & Design (2008) 8, 1 172

a=21.822(4)Å   b=17.499(3)Å   c=29.117(6)Å

α=90.00°   β=90.00°   γ=90.00°

C70.67H73.33Cl12Mn4N14Nb6O16

C70.67H73.33Cl12Mn4N14Nb6O16

Zhang, Jian-JunZhao, YueGamboa, Sergio AarónLachgar, Abdessadek

Crystal Growth & Design (2008) 8, 1 172-175

a=14.949(4)Å   b=13.373(4)Å   c=22.736(6)Å

α=90.00°   β=94.409(4)°   γ=90.00°

C54H80Cl12Mn2N12Nb6O10

C54H80Cl12Mn2N12Nb6O10

Zhang, Jian-JunZhao, YueGamboa, Sergio AarónLachgar, Abdessadek

Crystal Growth & Design (2008) 8, 1 172

a=13.381(2)Å   b=20.966(4)Å   c=13.915(2)Å

α=90.00°   β=91.546(3)°   γ=90.00°

C52H90Cl12Mn3N13Nb6O12

C52H90Cl12Mn3N13Nb6O12

Zhou, HuajunLachgar, Abdessadek

Crystal Growth & Design (2006) 6, 10 2384

a=16.5475(13)Å   b=23.0453(18)Å   c=21.7704(17)Å

α=90.00°   β=96.9040(10)°   γ=90.00°

C62H88Cl12Mn4N18Nb6O10

C62H88Cl12Mn4N18Nb6O10

Zhou, HuajunLachgar, Abdessadek

Crystal Growth & Design (2006) 6, 10 2384

a=12.870(4)Å   b=14.119(4)Å   c=24.792(7)Å

α=90.00°   β=91.402(5)°   γ=90.00°

C42H70Cl12Mn2N14Nb6O6

C42H70Cl12Mn2N14Nb6O6

Zhou, HuajunLachgar, Abdessadek

Crystal Growth & Design (2006) 6, 10 2384

a=13.6875(9)Å   b=13.2343(9)Å   c=19.8629(14)Å

α=90.00°   β=91.6050(10)°   γ=90.00°

C54H80.8Cl12Mn4N14Nb6O12.4

C54H80.8Cl12Mn4N14Nb6O12.4

Zhou, HuajunLachgar, Abdessadek

Crystal Growth & Design (2006) 6, 10 2384

a=14.741(5)Å   b=16.175(5)Å   c=18.969(6)Å

α=80.858(5)°   β=75.619(5)°   γ=74.272(5)°

C20H48Cl12K2N8Nb6O6

C20H48Cl12K2N8Nb6O6

Bangbo YanHuajun ZhouAbdessadek Lachgar

Inorganic Chemistry (2003) 42, 8818-8822

a=11.6404(13)Å   b=14.385(2)Å   c=16.494(3)Å

α=90.00°   β=105.262(13)°   γ=90.00°

Cl13.81In0.27Nb6O4.19Ti2

Cl13.81In0.27Nb6O4.19Ti2

Ekaterina AnokhinaMichael EssigCynthia DayAbdessadek Lachgar

Inorganic Chemistry (2000) 39, 2185-2188

a=12.679(2)Å   b=14.567(2)Å   c=12.632(3)Å

α=90.00°   β=95.255(19)°   γ=90.00°

Cl13.8Nb6O4.2Ti2Tl0.2

Cl13.8Nb6O4.2Ti2Tl0.2

Ekaterina AnokhinaMichael EssigCynthia DayAbdessadek Lachgar

Inorganic Chemistry (2000) 39, 2185-2188

a=12.7319(14)Å   b=14.6069(19)Å   c=12.6624(19)Å

α=90.00°   β=95.277(12)°   γ=90.00°

Ca2Fe0.5H4In0.5O13P3

Ca2Fe0.5H4In0.5O13P3

X. TangA. JonesA. LachgarB. J. GrossJ. L. Yarger

Inorganic Chemistry (1999) 38, 6032-6038

a=7.548(2)Å   b=15.670(3)Å   c=9.241(2)Å

α=90.00°   β=113.62(3)°   γ=90.00°

Ca2FeH4O13P3

Ca2FeH4O13P3

X. TangA. JonesA. LachgarB. J. GrossJ. L. Yarger

Inorganic Chemistry (1999) 38, 6032-6038

a=7.503(2)Å   b=15.477(2)Å   c=9.142(1)Å

α=90.00°   β=113.60(2)°   γ=90.00°

Cl18Cs2Nb6O6Ti4

Cl18Cs2Nb6O6Ti4

Ekaterina V. AnokhinaCynthia S. DayAbdessadek Lachgar

Inorganic Chemistry (2001) 40, 5072-5076

a=11.1903(7)Å   b=11.1903(7)Å   c=15.600(2)Å

α=90.00°   β=90.00°   γ=120.00°

Sc0.93 I2

I2Sc0.93

McCollum, B.C.Dudis, D.S.Lachgar, A.Corbett, J.D.

Inorganic Chemistry (1990) 29, 2030-2032

a=4.0851Å   b=4.0851Å   c=6.9824Å

α=90°   β=90°   γ=120°

Rb2 Cu2 (Nb6 Cl18)

Cl18Cu2Nb6Rb2

Sitar, J.Lachgar, A.Meyer, H.J.

Zeitschrift fuer Kristallographie (149,1979-) (1996) 211, 395-395

a=9.247Å   b=9.28Å   c=9.282Å

α=119.71°   β=95.5°   γ=105.76°

Cs3 (Ti2 Cl9)

Cl9Cs3Ti2

Gloger, T.Hinz, D.J.Meyer, G.Lachgar, A.

Zeitschrift fuer Kristallographie (149,1979-) (1996) 211, 821-821

a=7.3226Å   b=7.3226Å   c=17.9982Å

α=90°   β=90°   γ=120°

H2InO5P

H2InO5P

Tang, X. J.Lachgar, A.

Inorganic Chemistry (1998) 37, 6181-6185

a=5.4342Å   b=5.5508Å   c=6.5446Å

α=97.593°   β=94.558°   γ=107.565°

Ca2H4InO13P3

Ca2H4InO13P3

X. TangA. JonesA. LachgarB. J. GrossJ. L. Yarger

Inorganic Chemistry (1999) 38, 6032-6038

a=7.573Å   b=15.838Å   c=9.3126Å

α=90°   β=113.55°   γ=90°

Ba3Fe0.526H6In0.475O24P6

Ba3Fe0.526H6In0.475O24P6

Tang, X.Gentiletti, M. J.Lachgar, A.Morozov, V. A.Lazoryak, B. I.

Solid State Sciences (2001) 3, 143-153

a=9.502Å   b=9.502Å   c=37.116Å

α=90°   β=90°   γ=120°

Cl18Nb6RbTi

Cl18Nb6RbTi

Nägele, A.Anokhina, E.Sitar, J.Meyer, H. J.Lachgar, A.

Zeitschrift für Naturforschung B (2000) 55, 2 139-144

a=9.1630Å   b=9.1630Å   c=25.0140Å

α=90.000°   β=90.000°   γ=120.000°

6000152

Nägele, A.Anokhina, E.Sitar, J.Meyer, H. J.Lachgar, A.

Zeitschrift für Naturforschung B (2000) 55, 2 139-144

a=9.1075Å   b=9.1075Å   c=17.0017Å

α=90.000°   β=90.000°   γ=120.000°