Structures by: Bercaw J. E.

Total: 170

C36.83H46.32Cl2.34N2OTi

C36.83H46.32Cl2.34N2OTi

Klet, Rachel C.Theriault, Curt N.Klosin, JerzyLabinger, Jay A.Bercaw, John E.

Macromolecules (2014) 47, 10 3317

a=10.387(2)Å   b=15.918(4)Å   c=21.740(5)Å

α=76.406(5)°   β=79.036(5)°   γ=87.948(5)°

C46H48N2OZr

C46H48N2OZr

Klet, Rachel C.Theriault, Curt N.Klosin, JerzyLabinger, Jay A.Bercaw, John E.

Macromolecules (2014) 47, 10 3317

a=11.0188(4)Å   b=13.6909(5)Å   c=15.0870(6)Å

α=64.169(2)°   β=68.942(2)°   γ=75.522(2)°

C45H57NO4Ti,2.5(C6H6)

C45H57NO4Ti,2.5(C6H6)

Golisz, Suzanne R.Bercaw, John E.

Macromolecules (2009) 42, 22 8751

a=13.206(3)Å   b=13.234(3)Å   c=15.814(3)Å

α=80.363(4)°   β=67.605(4)°   γ=74.122(4)°

C42H46O2Ti

C42H46O2Ti

Golisz, Suzanne R.Bercaw, John E.

Macromolecules (2009) 42, 22 8751

a=11.8111(6)Å   b=12.4730(7)Å   c=13.6594(7)Å

α=100.565(3)°   β=100.814(3)°   γ=102.041(3)°

C57H67NO3Zr,C4H10O

C57H67NO3Zr,C4H10O

Golisz, Suzanne R.Bercaw, John E.

Macromolecules (2009) 42, 22 8751

a=9.9707(5)Å   b=11.2803(6)Å   c=23.3613(13)Å

α=97.9240(10)°   β=101.7800(10)°   γ=95.1750(10)°

C32H42N3O,C3H6O,Cl

C32H42N3O,C3H6O,Cl

Despagnet-Ayoub, EmmanuelleMiqueu, KarinneSotiropoulos, Jean-MarcHenling, Lawrence M.Day, Michael W.Labinger, Jay A.Bercaw, John E.

Chemical Science (2013) 4, 5 2117

a=10.3948(5)Å   b=12.9525(6)Å   c=25.0752(13)Å

α=90.00°   β=92.424(3)°   γ=90.00°

C33H41N3O,2(C3H6O),2(BF4)

C33H41N3O,2(C3H6O),2(BF4)

Despagnet-Ayoub, EmmanuelleMiqueu, KarinneSotiropoulos, Jean-MarcHenling, Lawrence M.Day, Michael W.Labinger, Jay A.Bercaw, John E.

Chemical Science (2013) 4, 5 2117

a=8.9329(3)Å   b=15.3817(5)Å   c=16.3064(6)Å

α=79.606(2)°   β=81.358(2)°   γ=75.254(2)°

C49H58N2O2Zr,C4H10O

C49H58N2O2Zr,C4H10O

Despagnet-Ayoub, EmmanuelleHenling, Lawrence M.Labinger, Jay A.Bercaw, John E.

Dalton transactions (Cambridge, England : 2003) (2013) 42, 44 15544-15547

a=21.4874(19)Å   b=21.1068(18)Å   c=22.3719(18)Å

α=90°   β=111.269(2)°   γ=90°

C33H36Cl2N2OTi

C33H36Cl2N2OTi

Rachel KletDavid VanderVeldeJay LabingerJohn E. Bercaw

Chem.Commun. (2012) 48, 6657

a=9.955(2)Å   b=11.603(3)Å   c=25.865(5)Å

α=90.00°   β=96.160(9)°   γ=90.00°

C39H63BF15O2Ta

C39H63BF15O2Ta

Schaefer, W. P.Quan, R. W.Bercaw, J. E.

Acta Crystallographica Section C (1993) 49, 5 878-881

a=12.217(2)Å   b=16.848(6)Å   c=18.834(3)Å

α=90°   β=100.37(2)°   γ=90°

C40H58Sc2

C40H58Sc2

Hajela, S.Schaefer, W. P.Bercaw, J. E.

Acta Crystallographica Section C (1992) 48, 10 1771-1773

a=8.641(5)Å   b=9.478(2)Å   c=12.338(5)Å

α=75.58(3)°   β=80.39(4)°   γ=63.75(3)°

C14H32CoO9P3Pt

C14H32CoO9P3Pt

Marsh, R. E.Schaefer, W. P.Lyon, D. K.Labinger, J. A.Bercaw, J. E.

Acta Crystallographica Section C (1992) 48, 9 1603-1606

a=9.106(3)Å   b=14.803(3)Å   c=15.147(3)Å

α=112.95(2)°   β=103.68(2)°   γ=95.10(2)°

C17H26Ta1,C1F3O3S1

C17H26Ta1,C1F3O3S1

Schaefer, W. P.Quan, R. W.Bercaw, J. E.

Acta Crystallographica Section C (1992) 48, 9 1610-1612

a=14.230(4)Å   b=19.283(4)Å   c=14.628(4)Å

α=90°   β=90°   γ=90°

C34H64Cl2LiO2Si3Y

C34H64Cl2LiO2Si3Y

Marsh, R. E.Schaefer, W. P.Coughlin, E. B.Bercaw, J. E.

Acta Crystallographica Section C (1992) 48, 10 1773-1776

a=13.110(8)Å   b=17.163(15)Å   c=20.623(14)Å

α=104.02(7)°   β=99.38(5)°   γ=100.24(6)°

C36Cl2F30P2Pt

C36Cl2F30P2Pt

Schaefer, W. P.Lyon, D. K.Labinger, J. A.Bercaw, J. E.

Acta Crystallographica Section C (1992) 48, 9 1582-1584

a=9.536(4)Å   b=11.221(2)Å   c=11.6130(10)Å

α=62.550(10)°   β=65.81(2)°   γ=73.05(2)°

C38H90B18Li1Sc2Si4,C12H24Li1O3

C38H90B18Li1Sc2Si4,C12H24Li1O3

Marsh, R. E.Schaefer, W. P.Bazan, G. C.Bercaw, J. E.

Acta Crystallographica Section C (1992) 48, 8 1416-1419

a=8.924(4)Å   b=18.467(5)Å   c=22.165(3)Å

α=91.42(2)°   β=92.36(2)°   γ=92.21(3)°

K(C15H28NSi).C4H8O

K(C15H28NSi).C4H8O

Schaefer, W. P.Cotter, W. D.Bercaw, J. E.

Acta Crystallographica Section C (1993) 49, 8 1489-1492

a=10.799(3)Å   b=10.676(5)Å   c=19.894(4)Å

α=90.0°   β=97.13(2)°   γ=90.0°

C28H40N4O4Pd

C28H40N4O4Pd

Suzanne R. GoliszNilay HazariJay A. LabingerJohn E. Bercaw

Journal of Organic Chemistry (2009) 74, 8441-8443

a=8.9242(3)Å   b=9.0229(3)Å   c=19.8217(8)Å

α=91.739(2)°   β=92.412(2)°   γ=117.762(2)°

C16H28N4O4Pd,0.5(C3H6O)

C16H28N4O4Pd,0.5(C3H6O)

Suzanne R. GoliszNilay HazariJay A. LabingerJohn E. Bercaw

Journal of Organic Chemistry (2009) 74, 8441-8443

a=12.1919(5)Å   b=13.4354(6)Å   c=25.0193(11)Å

α=90.00°   β=90.00°   γ=90.00°

C30H42N2O4Pd,2(CH2Cl2)

C30H42N2O4Pd,2(CH2Cl2)

Suzanne R. GoliszNilay HazariJay A. LabingerJohn E. Bercaw

Journal of Organic Chemistry (2009) 74, 8441-8443

a=23.8516(8)Å   b=12.7970(4)Å   c=24.0205(8)Å

α=90.00°   β=90.00°   γ=90.00°

C30H36F6N2O4Pd

C30H36F6N2O4Pd

Suzanne R. GoliszNilay HazariJay A. LabingerJohn E. Bercaw

Journal of Organic Chemistry (2009) 74, 8441-8443

a=13.9802(6)Å   b=13.1170(6)Å   c=17.1335(7)Å

α=90.00°   β=91.484(2)°   γ=90.00°

C17H29N3O4Pd

C17H29N3O4Pd

Suzanne R. GoliszNilay HazariJay A. LabingerJohn E. Bercaw

Journal of Organic Chemistry (2009) 74, 8441-8443

a=8.7011(4)Å   b=10.9491(4)Å   c=18.5054(7)Å

α=90.00°   β=90.00°   γ=90.00°

C41H57N2Pt,CH2Cl2,BF4

C41H57N2Pt,CH2Cl2,BF4

Tom G. DriverTravis J. WilliamsJay A. LabingerJohn E. Bercaw

Organometallics (2007) 26, 294-301

a=16.2295(4)Å   b=14.5556(3)Å   c=20.1968(5)Å

α=90.00°   β=113.1340(10)°   γ=90.00°

C25H17BrN2O3PRe,C6H6

C25H17BrN2O3PRe,C6H6

West, Nathan M.Labinger, Jay A.Bercaw, John E.

Organometallics (2011) 30, 10 2690

a=14.7064(6)Å   b=10.7257(4)Å   c=18.0072(7)Å

α=90.00°   β=92.959(2)°   γ=90.00°

C26H17ClN2O4PReZn,CH2Cl2

C26H17ClN2O4PReZn,CH2Cl2

West, Nathan M.Labinger, Jay A.Bercaw, John E.

Organometallics (2011) 30, 10 2690

a=8.9302(4)Å   b=10.5871(4)Å   c=16.0479(6)Å

α=96.985(2)°   β=94.550(2)°   γ=109.583(2)°

C26H17BrN2O4PRe

C26H17BrN2O4PRe

West, Nathan M.Labinger, Jay A.Bercaw, John E.

Organometallics (2011) 30, 10 2690

a=11.2751(5)Å   b=14.2689(6)Å   c=30.2884(14)Å

α=90.00°   β=98.082(2)°   γ=90.00°

C70H76O4Ti2

C70H76O4Ti2

Golisz, Suzanne R.Labinger, Jay A.Bercaw, John E.

Organometallics (2010) 29, 21 5026

a=14.0179(8)Å   b=14.4801(8)Å   c=14.7317(10)Å

α=99.366(3)°   β=104.864(4)°   γ=92.774(3)°

C82H90K4N2O6P4

C82H90K4N2O6P4

Winston, Matthew S.Bercaw, John E.

Organometallics (2010) 29, 23 6408

a=10.1565(12)Å   b=11.1487(11)Å   c=17.888(2)Å

α=85.015(5)°   β=87.679(5)°   γ=77.118(5)°

C33H33N3P2Zr,0.25(C6H6)

C33H33N3P2Zr,0.25(C6H6)

Winston, Matthew S.Bercaw, John E.

Organometallics (2010) 29, 23 6408

a=8.1980(9)Å   b=33.236(4)Å   c=23.311(2)Å

α=90.00°   β=96.280(6)°   γ=90.00°

C30H40N2Pd

C30H40N2Pd

Lin, Bo-LinBhattacharyya, Koyel X.Labinger, Jay A.Bercaw, John E.

Organometallics (2009) 28, 15 4400

a=15.0554(4)Å   b=7.2730(2)Å   c=11.8708(3)Å

α=90.00°   β=90.00°   γ=90.00°

C24H31N3Pd

C24H31N3Pd

Lin, Bo-LinBhattacharyya, Koyel X.Labinger, Jay A.Bercaw, John E.

Organometallics (2009) 28, 15 4400

a=7.9947(2)Å   b=11.0299(3)Å   c=14.0889(4)Å

α=72.0190(10)°   β=86.2190(10)°   γ=69.5370(10)°

C24H20As,C4H5Cl2IIrNO2

C24H20As,C4H5Cl2IIrNO2

Scott, Valerie J.Henling, Lawrence M.Day, Michael W.Bercaw, John E.Labinger, Jay A.

Organometallics (2009) 28, 14 4229

a=10.0906(3)Å   b=10.4936(3)Å   c=14.0657(4)Å

α=90.0840(10)°   β=107.5490(10)°   γ=94.2860(10)°

C12H28N2Pd

C12H28N2Pd

John E. BercawGeorge S. ChenJay A. LabingerBo-Lin Lin

Journal of the American Chemical Society (2008) 130, 17654-17655

a=8.7968(4)Å   b=14.4109(6)Å   c=10.9609(5)Å

α=90.00°   β=90.00°   γ=90.00°

C56H72B2O6P2Re,BF4

C56H72B2O6P2Re,BF4

Alexander J. M. MillerJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2010) 132, 3301-3303

a=9.7744(4)Å   b=10.3565(4)Å   c=14.9063(6)Å

α=92.554(2)°   β=104.359(2)°   γ=105.481(2)°

C30H57Al2Si2Zr,C24BF20

C30H57Al2Si2Zr,C24BF20

Steven M. BaldwinJohn E. BercawLawrence M. HenlingMichael W. DayHans H. Brintzinger

Journal of the American Chemical Society (2011) 133, 1805-1813

a=16.2579(8)Å   b=17.1922(7)Å   c=21.1975(10)Å

α=90.00°   β=103.262(3)°   γ=90.00°

C36H57Al2SiZr,C24BF20,0.5(C7H8)

C36H57Al2SiZr,C24BF20,0.5(C7H8)

Steven M. BaldwinJohn E. BercawLawrence M. HenlingMichael W. DayHans H. Brintzinger

Journal of the American Chemical Society (2011) 133, 1805-1813

a=17.3916(7)Å   b=26.6355(12)Å   c=27.3497(12)Å

α=90.00°   β=90.00°   γ=90.00°

C48H56B2O4P2Re,2(CH2Cl2),BF4

C48H56B2O4P2Re,2(CH2Cl2),BF4

Alexander J. M. MillerJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2008) 130, 11874-11875

a=13.5643(10)Å   b=14.4026(10)Å   c=14.6998(11)Å

α=71.725(4)°   β=70.883(4)°   γ=89.203(5)°

C60H88B2NaO7P2Re

C60H88B2NaO7P2Re

Alexander J. M. MillerJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2008) 130, 11874-11875

a=11.5493(10)Å   b=12.2399(10)Å   c=22.961(2)Å

α=90.795(5)°   β=100.549(5)°   γ=113.895(5)°

C96H114B4O8P4Re2,2(CH2Cl2)

C96H114B4O8P4Re2,2(CH2Cl2)

Alexander J. M. MillerJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2008) 130, 11874-11875

a=11.2518(5)Å   b=13.3609(6)Å   c=16.3588(7)Å

α=88.406(3)°   β=74.156(3)°   γ=80.300(3)°

C64H91B2NaO8P2Re

C64H91B2NaO8P2Re

Alexander J. M. MillerJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2008) 130, 11874-11875

a=11.5211(5)Å   b=12.3378(5)Å   c=23.1407(8)Å

α=81.125(2)°   β=81.140(2)°   γ=67.210(2)°

C7H13Cl4N3W

C7H13Cl4N3W

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=9.6582(4)Å   b=14.7762(7)Å   c=9.7818(4)Å

α=90.00°   β=92.958(2)°   γ=90.00°

C16H18Cl3N2O2Ta,C6H6

C16H18Cl3N2O2Ta,C6H6

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=10.9765(4)Å   b=14.9892(6)Å   c=15.2682(6)Å

α=90.00°   β=110.395(2)°   γ=90.00°

C16H16Br2Cl3N2O2Ta

C16H16Br2Cl3N2O2Ta

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=7.2890(3)Å   b=13.3859(5)Å   c=10.9809(4)Å

α=90.00°   β=90.2920(10)°   γ=90.00°

C16H20Cl3N2O2Ta

C16H20Cl3N2O2Ta

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=13.4839(6)Å   b=10.2768(4)Å   c=14.8254(7)Å

α=90.00°   β=108.079(2)°   γ=90.00°

C18H24Cl3N2O2Ta

C18H24Cl3N2O2Ta

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=7.3415(4)Å   b=9.2663(5)Å   c=16.2634(8)Å

α=78.390(3)°   β=84.353(3)°   γ=84.864(2)°

C16H18Cl3N2NbO2

C16H18Cl3N2NbO2

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=19.4748(9)Å   b=9.6654(4)Å   c=19.3262(9)Å

α=90.00°   β=93.727(2)°   γ=90.00°

C16H18Br2Cl3N2NbO2

C16H18Br2Cl3N2NbO2

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=8.8532(4)Å   b=26.6360(13)Å   c=9.4480(5)Å

α=90.00°   β=99.838(2)°   γ=90.00°

C16H18Cl5N2NbO2

C16H18Cl5N2NbO2

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=7.3791(4)Å   b=8.9250(4)Å   c=16.3801(8)Å

α=80.331(2)°   β=84.651(2)°   γ=85.152(2)°

C18H24Cl3N2NbO2

C18H24Cl3N2NbO2

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=7.3620(4)Å   b=9.2470(5)Å   c=16.2248(10)Å

α=78.177(3)°   β=85.220(3)°   γ=84.498(3)°

C11H18Cl3N2NbO2

C11H18Cl3N2NbO2

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=7.6003(4)Å   b=10.5217(6)Å   c=11.2752(6)Å

α=64.736(2)°   β=79.530(2)°   γ=83.340(2)°

C18H24Cl3N2NbO4,0.5(C7H8)

C18H24Cl3N2NbO4,0.5(C7H8)

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=7.4401(3)Å   b=10.5793(5)Å   c=16.3555(7)Å

α=97.7650(10)°   β=95.120(2)°   γ=99.874(2)°

C6H16N2O2Cl3Nb

C6H16N2O2Cl3Nb

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=20.6913(14)Å   b=12.5611(8)Å   c=15.4117(10)Å

α=90.00°   β=90.294(4)°   γ=90.00°

C9H20Cl3N2NbO2

C9H20Cl3N2NbO2

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=6.8865(3)Å   b=12.1853(5)Å   c=18.5285(8)Å

α=90.00°   β=90.00°   γ=90.00°

C67H102N4OPt2,2(C20H2BF18O)

C67H102N4OPt2,2(C20H2BF18O)

Jonathan S. OwenJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2006) 128, 2005-2016

a=12.3114(3)Å   b=15.4916(4)Å   c=16.6024(4)Å

α=63.6320(10)°   β=73.3540(10)°   γ=88.6650(10)°

C56H49BF20N2OPt,C51H52BF15N2OPt

C56H49BF20N2OPt,C51H52BF15N2OPt

Jonathan S. OwenJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2006) 128, 2005-2016

a=12.8501(7)Å   b=16.7460(9)Å   c=25.0841(13)Å

α=77.2830(10)°   β=88.5610(10)°   γ=85.4330(10)°

C30H33Cl5CrNO4P2

C30H33Cl5CrNO4P2

Theodor AgapieSusan J. SchoferJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2004) 126, 1304-1305

a=10.6977(7)Å   b=15.0041(10)Å   c=21.4755(14)Å

α=90.00°   β=96.1720(10)°   γ=90.00°

C42H41BrCl2CrNO4P2

C42H41BrCl2CrNO4P2

Theodor AgapieSusan J. SchoferJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2004) 126, 1304-1305

a=9.9167(6)Å   b=11.9935(8)Å   c=17.9725(11)Å

α=77.3710(10)°   β=76.3280(10)°   γ=70.6700(10)°

C26H42Cl2Si2Zr

C26H42Cl2Si2Zr

Cliff R. BaarChristopher J. LevyEndy Y.-J. MinLawrence M. HenlingMichael W. DayJohn E. Bercaw

Journal of the American Chemical Society (2004) 126, 8216-8231

a=8.8568(8)Å   b=19.7932(18)Å   c=16.5826(15)Å

α=90.00°   β=105.5220(10)°   γ=90.00°

C32H50Cl2Si2Zr,1.32(CH2Cl2)

C32H50Cl2Si2Zr,1.32(CH2Cl2)

Cliff R. BaarChristopher J. LevyEndy Y.-J. MinLawrence M. HenlingMichael W. DayJohn E. Bercaw

Journal of the American Chemical Society (2004) 126, 8216-8231

a=13.2833(7)Å   b=19.3805(10)Å   c=14.7651(8)Å

α=90.00°   β=107.1950(10)°   γ=90.00°

C38H52S2Si2Zr

C38H52S2Si2Zr

Cliff R. BaarChristopher J. LevyEndy Y.-J. MinLawrence M. HenlingMichael W. DayJohn E. Bercaw

Journal of the American Chemical Society (2004) 126, 8216-8231

a=12.6459(8)Å   b=12.6459(8)Å   c=47.844(4)Å

α=90.00°   β=90.00°   γ=90.00°

C30H50Cl2Si2Zr,0.5(C7H8)

C30H50Cl2Si2Zr,0.5(C7H8)

Cliff R. BaarChristopher J. LevyEndy Y.-J. MinLawrence M. HenlingMichael W. DayJohn E. Bercaw

Journal of the American Chemical Society (2004) 126, 8216-8231

a=10.3602(5)Å   b=13.1543(7)Å   c=14.0843(7)Å

α=97.199(1)°   β=104.068(1)°   γ=106.275(1)°

C30H36BF4N3Pt

C30H36BF4N3Pt

Alan F. HeydukTom G. DriverJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2004) 126, 15034-15035

a=10.4025(12)Å   b=10.4025(12)Å   c=55.489(9)Å

α=90.00°   β=90.00°   γ=90.00°

C16H16F6N2PtS

C16H16F6N2PtS

Carl N. IversonCharles A. G. CarterR. Tom BakerJohn D. ScollardJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2003) 125, 12674-12675

a=8.4470(9)Å   b=9.4655(10)Å   c=22.508(2)Å

α=90.00°   β=92.254(2)°   γ=90.00°

C20H24N3Pt

C20H24N3Pt

Carl N. IversonCharles A. G. CarterR. Tom BakerJohn D. ScollardJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2003) 125, 12674-12675

a=24.0988(18)Å   b=11.5512(9)Å   c=42.783(3)Å

α=90.00°   β=90.917(1)°   γ=90.00°

C45H69NO2Si2Ti

C45H69NO2Si2Ti

Sattler, AaronVanderVelde, David G.Labinger, Jay A.Bercaw, John E.

Journal of the American Chemical Society (2014) 136, 30 10790-10800

a=9.6385(5)Å   b=11.1526(6)Å   c=20.9436(12)Å

α=97.266(3)°   β=97.906(3)°   γ=100.804(3)°

C46H66ClNO2Ti

C46H66ClNO2Ti

Sattler, AaronVanderVelde, David G.Labinger, Jay A.Bercaw, John E.

Journal of the American Chemical Society (2014) 136, 30 10790-10800

a=12.1256(9)Å   b=12.3667(10)Å   c=14.8256(11)Å

α=92.283(4)°   β=94.294(4)°   γ=106.191(4)°

C43H64ClNO3Si2Ti

C43H64ClNO3Si2Ti

Sattler, AaronVanderVelde, David G.Labinger, Jay A.Bercaw, John E.

Journal of the American Chemical Society (2014) 136, 30 10790-10800

a=9.2620(3)Å   b=22.4163(9)Å   c=21.2155(8)Å

α=90°   β=95.996(2)°   γ=90°

C42H57NO2Ti

C42H57NO2Ti

Sattler, AaronVanderVelde, David G.Labinger, Jay A.Bercaw, John E.

Journal of the American Chemical Society (2014) 136, 30 10790-10800

a=9.5811(12)Å   b=20.012(3)Å   c=19.283(2)Å

α=90°   β=101.171(4)°   γ=90°

C22H24AlCl2SiZr

C22H24AlCl2SiZr

Taylor N. LentonJohn E. BercawValentina N. PanchenkoVladimir A. ZakharovDmitrii E. BabushkinIgor E. SoshnikovEvgenii P. TalsiHans H. Brintzinger

Journal of the American Chemical Society (2013) 135, 10710-10719

a=10.9586(4)Å   b=14.3029(6)Å   c=14.1790(6)Å

α=90°   β=92.126(2)°   γ=90°

C97.97H145.53N8O4Zr2

C97.97H145.53N8O4Zr2

Despagnet-Ayoub, EmmanuelleTakase, Michael K.Labinger, Jay A.Bercaw, John E.

Journal of the American Chemical Society (2015) 150817104804004

a=24.6453(7)Å   b=19.6437(5)Å   c=19.8192(6)Å

α=90°   β=90.3251(17)°   γ=90°

C52H67N2O2PZr

C52H67N2O2PZr

Despagnet-Ayoub, EmmanuelleTakase, Michael K.Labinger, Jay A.Bercaw, John E.

Journal of the American Chemical Society (2015) 150817104804004

a=19.2090(7)Å   b=11.0430(4)Å   c=22.7466(10)Å

α=90°   β=96.8727(15)°   γ=90°

C35H35N3

C35H35N3

Edward C. WeintrobDaniel TofanJohn E. Bercaw

Inorganic Chemistry (2009) 48, 3808-3813

a=12.1774(12)Å   b=8.3901(8)Å   c=27.039(3)Å

α=90.00°   β=93.803(2)°   γ=90.00°

C39H41FeN3O

C39H41FeN3O

Edward C. WeintrobDaniel TofanJohn E. Bercaw

Inorganic Chemistry (2009) 48, 3808-3813

a=14.5396(6)Å   b=13.5644(6)Å   c=16.6014(7)Å

α=90.00°   β=98.247(2)°   γ=90.00°

2(C35H33FeIN3),1.5(C6H6)

2(C35H33FeIN3),1.5(C6H6)

Edward C. WeintrobDaniel TofanJohn E. Bercaw

Inorganic Chemistry (2009) 48, 3808-3813

a=14.8740(7)Å   b=14.9489(7)Å   c=16.9750(8)Å

α=69.528(3)°   β=72.061(3)°   γ=76.207(3)°

C70H66Fe2N6O,0.5(C7H8)

C70H66Fe2N6O,0.5(C7H8)

Edward C. WeintrobDaniel TofanJohn E. Bercaw

Inorganic Chemistry (2009) 48, 3808-3813

a=19.8707(9)Å   b=39.4031(19)Å   c=15.1038(6)Å

α=90.00°   β=90.00°   γ=90.00°

C66H86N2O8Ta2,4(CH2Cl2)

C66H86N2O8Ta2,4(CH2Cl2)

Tonks, Ian A.Henling, Larry M.Day, Michael W.Bercaw, John E.

Inorganic Chemistry (2009) 48, 12 5096-5105

a=16.0570(7)Å   b=12.8407(6)Å   c=18.4561(9)Å

α=90.00°   β=103.542(3)°   γ=90.00°

C51H61N4O2Ta,1.5(C6H6)

C51H61N4O2Ta,1.5(C6H6)

Tonks, Ian A.Henling, Larry M.Day, Michael W.Bercaw, John E.

Inorganic Chemistry (2009) 48, 12 5096-5105

a=25.7250(8)Å   b=17.8546(5)Å   c=23.6141(7)Å

α=90.00°   β=105.9790(10)°   γ=90.00°

C41H55ClN3O2Ta

C41H55ClN3O2Ta

Tonks, Ian A.Henling, Larry M.Day, Michael W.Bercaw, John E.

Inorganic Chemistry (2009) 48, 12 5096-5105

a=9.9628(5)Å   b=10.6118(5)Å   c=18.9240(9)Å

α=80.804(3)°   β=89.355(3)°   γ=81.578(3)°

C37H55ClN3O2Ta,0.75(C4H10O)

C37H55ClN3O2Ta,0.75(C4H10O)

Tonks, Ian A.Henling, Larry M.Day, Michael W.Bercaw, John E.

Inorganic Chemistry (2009) 48, 12 5096-5105

a=14.7164(6)Å   b=18.3370(7)Å   c=31.2188(13)Å

α=90.00°   β=101.802(2)°   γ=90.00°

C36H52ClN2O2Ta,C4H10O

C36H52ClN2O2Ta,C4H10O

Tonks, Ian A.Henling, Larry M.Day, Michael W.Bercaw, John E.

Inorganic Chemistry (2009) 48, 12 5096-5105

a=47.432(2)Å   b=13.7447(7)Å   c=12.4876(6)Å

α=90.00°   β=100.510(3)°   γ=90.00°

4302275

Tonks, Ian A.Henling, Larry M.Day, Michael W.Bercaw, John E.

Inorganic Chemistry (2009) 48, 12 5096-5105

a=15.741(3)Å   b=18.296(3)Å   c=19.628(3)Å

α=95.871(11)°   β=107.280(10)°   γ=115.467(8)°

C33H49N7Si2Ta,C32H12BF24

C33H49N7Si2Ta,C32H12BF24

Ian A. TonksJohn E. Bercaw

Inorganic Chemistry (2010) 49, 4648-4656

a=22.0650(16)Å   b=13.9417(10)Å   c=24.4542(16)Å

α=90.00°   β=114.312(4)°   γ=90.00°

C16H20Cl3N2O2Ta

C16H20Cl3N2O2Ta

Ian A. TonksJohn E. Bercaw

Inorganic Chemistry (2010) 49, 4648-4656

a=13.4839(6)Å   b=10.2768(4)Å   c=14.8254(7)Å

α=90.00°   β=108.079(2)°   γ=90.00°

C22H20ClN2Ta

C22H20ClN2Ta

Ian A. TonksJohn E. Bercaw

Inorganic Chemistry (2010) 49, 4648-4656

a=19.1261(8)Å   b=10.2503(4)Å   c=19.2383(8)Å

α=90.00°   β=100.720(2)°   γ=90.00°

C50H58ClN4O2Ta

C50H58ClN4O2Ta

Ian A. TonksJohn E. Bercaw

Inorganic Chemistry (2010) 49, 4648-4656

a=15.6102(8)Å   b=20.2128(10)Å   c=15.7963(8)Å

α=90.00°   β=113.066(3)°   γ=90.00°

C37H56ClN4O2Ta

C37H56ClN4O2Ta

Ian A. TonksJohn E. Bercaw

Inorganic Chemistry (2010) 49, 4648-4656

a=34.7022(12)Å   b=9.2582(3)Å   c=23.1835(9)Å

α=90.00°   β=90.00°   γ=90.00°

C23H39ClN5Si2Ta

C23H39ClN5Si2Ta

Ian A. TonksJohn E. Bercaw

Inorganic Chemistry (2010) 49, 4648-4656

a=13.1052(6)Å   b=12.9574(6)Å   c=16.9529(8)Å

α=90.00°   β=90.622(3)°   γ=90.00°

C25H43ClN5Si2Ta

C25H43ClN5Si2Ta

Ian A. TonksJohn E. Bercaw

Inorganic Chemistry (2010) 49, 4648-4656

a=8.1959(4)Å   b=10.4496(5)Å   c=34.5115(14)Å

α=90.00°   β=94.059(2)°   γ=90.00°

C9H26N2O2Pt

C9H26N2O2Pt

Vsevolod V. RostovtsevLawrence M. HenlingJay A. LabingerJohn E. Bercaw

Inorganic Chemistry (2002) 41, 3608-3619

a=16.101(5)Å   b=13.245(4)Å   c=6.134(2)Å

α=90.00°   β=90.00°   γ=90.00°

C9H26N2O3Pt

C9H26N2O3Pt

Vsevolod V. RostovtsevLawrence M. HenlingJay A. LabingerJohn E. Bercaw

Inorganic Chemistry (2002) 41, 3608-3619

a=6.5985(8)Å   b=13.5019(16)Å   c=14.9187(18)Å

α=90.00°   β=93.408(2)°   γ=90.00°

C26H22N2O4Pd2

C26H22N2O4Pd2

John E. BercawAlec C. DurrellHarry B. GrayJennifer C. GreenNilay HazariJay A. LabingerJay R. Winkler

Inorganic Chemistry (2010) 49, 1801-1810

a=9.6500(4)Å   b=18.7057(7)Å   c=12.8661(5)Å

α=90.00°   β=101.452(2)°   γ=90.00°

C28H26N2O4Pd2

C28H26N2O4Pd2

John E. BercawAlec C. DurrellHarry B. GrayJennifer C. GreenNilay HazariJay A. LabingerJay R. Winkler

Inorganic Chemistry (2010) 49, 1801-1810

a=9.7796(5)Å   b=19.8167(9)Å   c=13.2199(6)Å

α=90.00°   β=101.497(3)°   γ=90.00°

C26H16F6N2O4Pd2

C26H16F6N2O4Pd2

John E. BercawAlec C. DurrellHarry B. GrayJennifer C. GreenNilay HazariJay A. LabingerJay R. Winkler

Inorganic Chemistry (2010) 49, 1801-1810

a=26.4337(10)Å   b=17.4055(7)Å   c=17.2538(7)Å

α=90.00°   β=104.9510(10)°   γ=90.00°

C28H20F6N2O4Pd2

C28H20F6N2O4Pd2

John E. BercawAlec C. DurrellHarry B. GrayJennifer C. GreenNilay HazariJay A. LabingerJay R. Winkler

Inorganic Chemistry (2010) 49, 1801-1810

a=20.8769(12)Å   b=17.3672(9)Å   c=25.1660(13)Å

α=90.00°   β=112.114(2)°   γ=90.00°

C22H16Cl2N2Pd2

C22H16Cl2N2Pd2

John E. BercawAlec C. DurrellHarry B. GrayJennifer C. GreenNilay HazariJay A. LabingerJay R. Winkler

Inorganic Chemistry (2010) 49, 1801-1810

a=9.3288(4)Å   b=19.4207(8)Å   c=10.8265(5)Å

α=90.00°   β=104.868(2)°   γ=90.00°

C27H20Cl2N2O4PReZn

C27H20Cl2N2O4PReZn

West, Nathan M.Labinger, Jay A.Bercaw, John E.

Organometallics (2011) 30, 10 2690

a=8.7910(5)Å   b=11.3904(7)Å   c=13.8593(8)Å

α=81.394(4)°   β=79.674(4)°   γ=87.302(4)°

C16H20Cl3N2NbO2

C16H20Cl3N2NbO2

Ian A. TonksAlec C. DurrellHarry B. GrayJohn E. Bercaw

Journal of the American Chemical Society (2012) 134, 7301-7304

a=10.9592(4)Å   b=14.1496(5)Å   c=12.5713(4)Å

α=90.00°   β=91.137(2)°   γ=90.00°

C50H52Cl6CrNO4P2

C50H52Cl6CrNO4P2

Theodor AgapieSusan J. SchoferJay A. LabingerJohn E. Bercaw

Journal of the American Chemical Society (2004) 126, 1304-1305

a=15.1624(7)Å   b=15.4024(7)Å   c=22.7168(11)Å

α=91.2320(10)°   β=94.4350(10)°   γ=110.5250(10)°

C39H61N4O2Ta

C39H61N4O2Ta

Tonks, Ian A.Henling, Larry M.Day, Michael W.Bercaw, John E.

Inorganic Chemistry (2009) 48, 12 5096-5105

a=9.8149(5)Å   b=29.0840(14)Å   c=14.0826(6)Å

α=90.00°   β=104.357(3)°   γ=90.00°

C25H31ClN3S2Ta,0.5(C6H6)

C25H31ClN3S2Ta,0.5(C6H6)

Lenton, Taylor N.VanderVelde, David G.Bercaw, John E.

Organometallics (2012) 31, 7492-7499

a=28.2002(12)Å   b=13.4469(6)Å   c=14.7030(7)Å

α=90.00°   β=101.852(2)°   γ=90.00°