Structures by: Lefebvre J.

Total: 45

Gamma Sorbitol

C6H14O6

Rukiah, MwaffakLefebvre, JacquesHernandez, Oliviervan Beek, WouterSerpelloni, Michel

Journal of Applied Crystallography (2004) 37, 5 766-772

a=24.30122(17)Å   b=20.57261(14)Å   c=4.86719(3)Å

α=90.00000°   β=90.00000°   γ=90.00000°

Meta-toluidine

C7H9N

Lefebvre, JacquesDescamps, MarcHemon, StephanieDzyabchenko, Alexander

Journal of Applied Crystallography (2004) 37, 464-471

a=24.8727(6)Å   b=5.80729(17)Å   c=8.7615(3)Å

α=90.00000°   β=100.0624(17)°   γ=90.00000°

Caffeine

C8H10N4O2

Derollez, PatrickCorreia, Natália T.Danède, FlorenceCapet, FrédéricAffouard, FrédéricLefebvre, JacquesDescamps, Marc

Acta Crystallographica Section B (2005) 61, 3 329-334

a=14.9372(5)Å   b=14.9372(5)Å   c=6.8980(2)Å

α=90.00000°   β=90.00000°   γ=120.00000°

Mixed alpha/beta lactose

C12H22O11

Lefebvre, JacquesWillart, J.-F.Caron, V.Lefort, R.Affouard, F.Danède, F.

Acta Crystallographica Section B (2005) 61, 4 455-463

a=7.6258(4)Å   b=19.6559(10)Å   c=5.0613(3)Å

α=95.646(2)°   β=105.430(2)°   γ=80.996(2)°

Phenobarbital

C12H12N2O3

Platteau, CyrilLefebvre, JacquesHemon, StephanieBaehtz, CarstenDanede, FlorencePrevost, Dominique

Acta Crystallographica Section B (2005) 61, 1 80-88

a=10.6907(2)Å   b=47.1248(11)Å   c=6.80017(15)Å

α=90°   β=94.1849(8)°   γ=90°

Phenobarbital

C12H12N2O3

Platteau, CyrilLefebvre, JacquesHemon, StephanieBaehtz, CarstenDanede, FlorencePrevost, Dominique

Acta Crystallographica Section B (2005) 61, 1 80-88

a=10.7313(3)Å   b=23.5112(7)Å   c=6.78309(18)Å

α=90.9687(9)°   β=94.4757(9)°   γ=88.1533(12)°

Stable alpha-lactose

C12H22O11

Platteau, CyrilLefebvre, JacquesAffouard, FredericWillart, Jean-FrançoisDerollez, PatrickMallet, Franck

Acta Crystallographica Section B (2005) 61, 2 185-191

a=7.65217(17)Å   b=19.8637(5)Å   c=4.98773(13)Å

α=92.0279(10)°   β=106.2610(7)°   γ=97.1529(8)°

C5H30N5,Bi2Cl11

C5H30N5,Bi2Cl11

Carpentier, P.Lefebvre, J.Jakubas, R.

Acta Crystallographica Section B (1995) 51, 2 167-174

a=12.880(4)Å   b=13.916(3)Å   c=15.0590(10)Å

α=90°   β=90°   γ=90.13°

Hygroscopic alpha-lactose

C12H22O11

Cyril PlatteauJacques LefebvreFrederic AffouardPatrick Derollez

Acta Crystallographica Section B (2004) 60, 4 453-460

a=7.7795(2)Å   b=19.6931(6)Å   c=4.90643(11)Å

α=90.00000°   β=103.6909(15)°   γ=90.00000°

Meta-toluidine

C7H9N

Lefebvre, JacquesDescamps, MarcHemon, StephanieDzyabchenko, Alexander

Journal of Applied Crystallography (2004) 37, 464-471

a=24.8727(6)Å   b=5.80729(17)Å   c=8.7615(3)Å

α=90.00000°   β=100.0624(17)°   γ=90.00000°

Triphenyl phosphite

C18H15O3P1

Hernandez, OlivierHédoux, AlainLefebvre, JacquesGuinet, YannickDescamps, MarcPapoular, RobertMasson, Olivier

Journal of Applied Crystallography (2002) 35, 2 212-219

a=37.7660(10)Å   b=37.7660(10)Å   c=5.7286(2)Å

α=90°   β=90°   γ=120°

Gamma Sorbitol

C6H14O6

Rukiah, MwaffakLefebvre, JacquesHernandez, Oliviervan Beek, WouterSerpelloni, Michel

Journal of Applied Crystallography (2004) 37, 5 766-772

a=24.30122(17)Å   b=20.57261(14)Å   c=4.86719(3)Å

α=90.00000°   β=90.00000°   γ=90.00000°

C7H7Au2Cu1N5O1

C7H7Au2Cu1N5O1

Julie LefebvreRaymond J. BatchelorDaniel B. Leznoff

Journal of the American Chemical Society (2004) 126, 16117-16125

a=12.8412(10)Å   b=14.5056(8)Å   c=13.9932(9)Å

α=90°   β=96.064(3)°   γ=90°

C7H5Au1Cu0.50N3

C7H5Au1Cu0.50N3

Julie LefebvreRaymond J. BatchelorDaniel B. Leznoff

Journal of the American Chemical Society (2004) 126, 16117-16125

a=7.3438(7)Å   b=14.1201(10)Å   c=8.2696(6)Å

α=90°   β=94.082(3)°   γ=90°

C4H6Au1Cu0.50N2O1S1

C4H6Au1Cu0.50N2O1S1

Julie LefebvreRaymond J. BatchelorDaniel B. Leznoff

Journal of the American Chemical Society (2004) 126, 16117-16125

a=11.5449(15)Å   b=14.191(4)Å   c=11.5895(12)Å

α=90°   β=112.536(9)°   γ=90°

C72H60F36Mn3N6O3P2

C72H60F36Mn3N6O3P2

Jillian A. HatneanRitu RaturiJulie LefebvreDaniel B. LeznoffGavin LawesSamuel A. Johnson

Journal of the American Chemical Society (2006) 128, 14992-14999

a=16.2034(17)Å   b=21.886(2)Å   c=22.723(2)Å

α=90°   β=90.1720(10)°   γ=90°

C72H60F36Mn3N6O3P2

C72H60F36Mn3N6O3P2

Jillian A. HatneanRitu RaturiJulie LefebvreDaniel B. LeznoffGavin LawesSamuel A. Johnson

Journal of the American Chemical Society (2006) 128, 14992-14999

a=24.1780(16)Å   b=24.1780(16)Å   c=54.747(8)Å

α=90°   β=90°   γ=120°

C54H66Mg3N6O3P2,2.5(C6H6)

C54H66Mg3N6O3P2,2.5(C6H6)

Jillian A. HatneanRitu RaturiJulie LefebvreDaniel B. LeznoffGavin LawesSamuel A. Johnson

Journal of the American Chemical Society (2006) 128, 14992-14999

a=26.882(4)Å   b=9.5933(13)Å   c=25.776(3)Å

α=90°   β=108.937(2)°   γ=90°

C72H60F36Mg3N6O3P2

C72H60F36Mg3N6O3P2

Jillian A. HatneanRitu RaturiJulie LefebvreDaniel B. LeznoffGavin LawesSamuel A. Johnson

Journal of the American Chemical Society (2006) 128, 14992-14999

a=16.1671(19)Å   b=21.732(3)Å   c=22.771(3)Å

α=90°   β=90.6540(10)°   γ=90°

C72H60F36Mg3N6O3P2

C72H60F36Mg3N6O3P2

Jillian A. HatneanRitu RaturiJulie LefebvreDaniel B. LeznoffGavin LawesSamuel A. Johnson

Journal of the American Chemical Society (2006) 128, 14992-14999

a=24.1481(11)Å   b=24.1481(11)Å   c=54.053(5)Å

α=90°   β=90°   γ=120°

C60H78Mn3N6O4.5P2

C60H78Mn3N6O4.5P2

Jillian A. HatneanRitu RaturiJulie LefebvreDaniel B. LeznoffGavin LawesSamuel A. Johnson

Journal of the American Chemical Society (2006) 128, 14992-14999

a=9.8336(10)Å   b=13.3050(13)Å   c=22.388(2)Å

α=86.3530(10)°   β=81.8870(10)°   γ=84.5170(10)°

C29H38Cl2Cu2N4O5

C29H38Cl2Cu2N4O5

Shane G. TelferNyree D. ParkerReiko KurodaTakunori HaradaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2008) 47, 209-218

a=13.4562(16)Å   b=14.3942(17)Å   c=15.9350(19)Å

α=90.00°   β=90.273(2)°   γ=90.00°

C28H36Br2Cu2N4O5

C28H36Br2Cu2N4O5

Shane G. TelferNyree D. ParkerReiko KurodaTakunori HaradaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2008) 47, 209-218

a=13.606(2)Å   b=14.407(3)Å   c=15.591(3)Å

α=90.00°   β=90.107(3)°   γ=90.00°

C28H34Cl2Cu2N4O12

C28H34Cl2Cu2N4O12

Shane G. TelferNyree D. ParkerReiko KurodaTakunori HaradaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2008) 47, 209-218

a=10.0579(6)Å   b=11.7112(7)Å   c=13.7986(8)Å

α=90.00°   β=105.2620(10)°   γ=90.00°

C16H24Cl2CuN2O3

C16H24Cl2CuN2O3

Shane G. TelferNyree D. ParkerReiko KurodaTakunori HaradaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2008) 47, 209-218

a=9.1495(8)Å   b=8.6211(7)Å   c=12.9070(11)Å

α=90.00°   β=97.6750(10)°   γ=90.00°

C32H47Br3Cu2N4O6

C32H47Br3Cu2N4O6

Shane G. TelferNyree D. ParkerReiko KurodaTakunori HaradaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2008) 47, 209-218

a=10.5843(3)Å   b=16.3320(4)Å   c=11.9571(3)Å

α=90.00°   β=115.0370(10)°   γ=90.00°

C69H96Cl4N8Ni8O21

C69H96Cl4N8Ni8O21

Shane G. TelferNyree D. ParkerReiko KurodaTakunori HaradaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2008) 47, 209-218

a=15.9492(13)Å   b=35.895(3)Å   c=13.9089(11)Å

α=90.00°   β=90.00°   γ=90.00°

C68H89Cl6Co3N11O4

C68H89Cl6Co3N11O4

Shane G. TelferTomohiro SatoReiko KurodaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2004) 43, 421-429

a=11.5946(18)Å   b=22.246(4)Å   c=15.350(2)Å

α=90.00°   β=110.643(3)°   γ=90.00°

C53.5H43Cl2N7NiO10.5

C53.5H43Cl2N7NiO10.5

Shane G. TelferTomohiro SatoTakunori HaradaReiko KurodaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2004) 43, 6168-6176

a=11.6939(4)Å   b=11.6939(4)Å   c=33.013(2)Å

α=90.00°   β=90.00°   γ=120.00°

C33H24Cl6Cu2N4

C33H24Cl6Cu2N4

Shane G. TelferTomohiro SatoTakunori HaradaReiko KurodaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2004) 43, 6168-6176

a=10.0013(13)Å   b=13.9969(18)Å   c=12.0911(15)Å

α=90.00°   β=97.520(2)°   γ=90.00°

C26H19CuN3O4S

C26H19CuN3O4S

Shane G. TelferTomohiro SatoTakunori HaradaReiko KurodaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2004) 43, 6168-6176

a=18.5934(7)Å   b=18.5934(7)Å   c=16.2207(12)Å

α=90.00°   β=90.00°   γ=120.00°

C74H62Cl2CoN8O10

C74H62Cl2CoN8O10

Shane G. TelferTomohiro SatoTakunori HaradaReiko KurodaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2004) 43, 6168-6176

a=11.6478(7)Å   b=12.4334(7)Å   c=13.4116(8)Å

α=112.2650(10)°   β=98.2560(10)°   γ=111.9020(10)°

C56H54Cu2N6O12S2

C56H54Cu2N6O12S2

Shane G. TelferTomohiro SatoTakunori HaradaReiko KurodaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2004) 43, 6168-6176

a=17.6884(11)Å   b=8.5915(5)Å   c=18.7066(11)Å

α=90.00°   β=115.4660(10)°   γ=90.00°

Fe (O H2)2 (O H) (Au (C N)2)2

C4Au2FeN4O2

Trudel, S.Kaiser, C.Sonier, J.E.Tyagi, P.Leznoff, D.B.Pacradouni, V.Lefebvre, J.

Inorganic Chemistry (2009) 48, 55-67

a=6.26Å   b=3.59Å   c=10.34Å

α=90°   β=90°   γ=90°

C23H32Cl3Co3N3O5S

C23H32Cl3Co3N3O5S

Telfer, Shane G.Kuroda, ReikoLefebvre, JulieLeznoff, Daniel B.

Inorganic Chemistry (2006) 45, 12 4592-4601

a=11.4620(11)Å   b=11.7945(11)Å   c=11.9265(12)Å

α=80.805(2)°   β=67.301(2)°   γ=86.474(2)°

C14H18CoN2O6S

C14H18CoN2O6S

Telfer, Shane G.Kuroda, ReikoLefebvre, JulieLeznoff, Daniel B.

Inorganic Chemistry (2006) 45, 12 4592-4601

a=8.4393(6)Å   b=8.5797(6)Å   c=12.0728(9)Å

α=81.8420(10)°   β=84.0600(10)°   γ=64.0080(10)°

C31H26Cl3Co2N3O3

C31H26Cl3Co2N3O3

Telfer, Shane G.Kuroda, ReikoLefebvre, JulieLeznoff, Daniel B.

Inorganic Chemistry (2006) 45, 12 4592-4601

a=10.927(3)Å   b=11.867(3)Å   c=13.562(3)Å

α=102.892(4)°   β=110.558(4)°   γ=108.818(4)°

C30H47Cl4Co4N4O9.5

C30H47Cl4Co4N4O9.5

Telfer, Shane G.Kuroda, ReikoLefebvre, JulieLeznoff, Daniel B.

Inorganic Chemistry (2006) 45, 12 4592-4601

a=14.9668(17)Å   b=17.3572(19)Å   c=31.227(4)Å

α=90.00°   β=102.650(2)°   γ=90.00°

C16H24Au4Cu2N8O4S4

C16H24Au4Cu2N8O4S4

Julie LefebvreRaymond J. BatchelorDaniel B. Leznoff

Journal of the American Chemical Society (2004) 126, 16117-16125

a=7.874(7)Å   b=12.761(11)Å   c=16.207(13)Å

α=89.61(7)°   β=82.29(7)°   γ=88.57(7)°

C7H8ClNOZn

C7H8ClNOZn

Shane G. TelferNyree D. ParkerReiko KurodaTakunori HaradaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2008) 47, 209-218

a=5.0670(6)Å   b=9.1795(10)Å   c=18.293(2)Å

α=90.00°   β=90.00°   γ=90.00°

C32H48Cl4N4Ni4O8

C32H48Cl4N4Ni4O8

Shane G. TelferNyree D. ParkerReiko KurodaTakunori HaradaJulie LefebvreDaniel B. Leznoff

Inorganic Chemistry (2008) 47, 209-218

a=16.2641(7)Å   b=15.0302(7)Å   c=16.6497(11)Å

α=90.00°   β=100.9830(10)°   γ=90.00°

C21H24Co2N4O6

C21H24Co2N4O6

Telfer, Shane G.Kuroda, ReikoLefebvre, JulieLeznoff, Daniel B.

Inorganic Chemistry (2006) 45, 12 4592-4601

a=9.3991(15)Å   b=11.4750(18)Å   c=11.9191(19)Å

α=110.938(2)°   β=91.528(3)°   γ=107.942(3)°

Co (O H2)2 (Au (C N)2)2

C4H4Au2CoN4O2

Lefebvre, J.Tyagi, P.Trudel, S.Leznoff, D.B.Pacradouni, V.Sonier, J.E.Kaiser, C.

Inorganic Chemistry (2009) 48, 55-67

a=6.4Å   b=20.61Å   c=3.39Å

α=90°   β=90.48°   γ=90°

Fe (O H2)2 (Au (C N)2)2

C4H4Au2FeN4O2

Lefebvre, J.Tyagi, P.Leznoff, D.B.Trudel, S.Kaiser, C.Pacradouni, V.Sonier, J.E.

Inorganic Chemistry (2009) 48, 55-67

a=6.43Å   b=20.67Å   c=3.47Å

α=90°   β=90.68°   γ=90°

Mn (O H2)2 (Au (C N)2)2

C4H4Au2MnN4O2

Lefebvre, J.Sonier, J.E.Trudel, S.Tyagi, P.Kaiser, C.Pacradouni, V.Leznoff, D.B.

Inorganic Chemistry (2009) 48, 55-67

a=6.5Å   b=20.78Å   c=3.49Å

α=90°   β=90.4°   γ=90°