Structures by: Miller A. D.

Total: 22

C26H18N2O2S

C26H18N2O2S

Bhurruth-Alcor, YushmaRøst, ThereseJorgensen, Michael R.Kontogiorgis, ChristosSkorve, JonCooper, Robert G.Sheridan, Joseph M.Hamilton, William D. O.Heal, Jonathan R.Berge, Rolf K.Miller, Andrew D.

Organic & biomolecular chemistry (2011) 9, 4 1169-1188

a=18.0309(4)Å   b=5.88641(15)Å   c=19.5220(4)Å

α=90°   β=98.636(2)°   γ=90°

C22H16N2O2S

C22H16N2O2S

Bhurruth-Alcor, YushmaRøst, ThereseJorgensen, Michael R.Kontogiorgis, ChristosSkorve, JonCooper, Robert G.Sheridan, Joseph M.Hamilton, William D. O.Heal, Jonathan R.Berge, Rolf K.Miller, Andrew D.

Organic & biomolecular chemistry (2011) 9, 4 1169-1188

a=10.8591(3)Å   b=10.0425(3)Å   c=17.0542(4)Å

α=90.00°   β=100.888(3)°   γ=90.00°

C60H78Si6,0.5(C3H6O)

C60H78Si6,0.5(C3H6O)

Tannaci, John FKratter, Ian HRider, Eric AMcBee, Jennifer LMiller, Adam DTilley, T Don

Chemical communications (Cambridge, England) (2008) 34, 2 233-234

a=12.080(3)Å   b=14.631(3)Å   c=35.616(8)Å

α=90.662(4)°   β=91.395(4)°   γ=103.698(4)°

C88H96Zr2

C88H96Zr2

Adam D. MillerJennifer L. McBeeT. Don Tilley

Journal of Organic Chemistry (2009) 74, 2880-2883

a=10.5012(10)Å   b=17.8328(17)Å   c=17.7760(17)Å

α=90.00°   β=94.963(2)°   γ=90.00°

C30H66P2Pd

C30H66P2Pd

Steven M. RadersJane N. MooreJacquelynn K. ParksAshley D. MillerThomas M. LeißingSteven P. KelleyRobin D. RogersKevin H. Shaughnessy

Journal of Organic Chemistry (2013) 78, 4649-4664

a=9.7244(4)Å   b=9.7244(4)Å   c=20.4524(12)Å

α=90.00°   β=90.00°   γ=120.00°

C25H46BrPPd

C25H46BrPPd

Steven M. RadersJane N. MooreJacquelynn K. ParksAshley D. MillerThomas M. LeißingSteven P. KelleyRobin D. RogersKevin H. Shaughnessy

Journal of Organic Chemistry (2013) 78, 4649-4664

a=15.0300(16)Å   b=16.4173(16)Å   c=12.3394(12)Å

α=90.00°   β=113.961(3)°   γ=90.00°

C44H80Br2P2Pd2

C44H80Br2P2Pd2

Steven M. RadersJane N. MooreJacquelynn K. ParksAshley D. MillerThomas M. LeißingSteven P. KelleyRobin D. RogersKevin H. Shaughnessy

Journal of Organic Chemistry (2013) 78, 4649-4664

a=13.689(9)Å   b=9.441(7)Å   c=18.734(13)Å

α=90.00°   β=91.63(2)°   γ=90.00°

C48H58P2Zr2

C48H58P2Zr2

Miller, Adam D.Johnson, Samuel A.Tupper, Karl A.McBee, Jennifer L.Tilley, T. Don

Organometallics (2009) 28, 4 1252

a=22.707(3)Å   b=9.3642(13)Å   c=21.053(3)Å

α=90.00°   β=112.552(2)°   γ=90.00°

C30H39PZr

C30H39PZr

Miller, Adam D.Johnson, Samuel A.Tupper, Karl A.McBee, Jennifer L.Tilley, T. Don

Organometallics (2009) 28, 4 1252

a=13.7280(18)Å   b=9.8567(13)Å   c=20.224(3)Å

α=90.00°   β=109.002(2)°   γ=90.00°

C36H35PZr

C36H35PZr

Miller, Adam D.Johnson, Samuel A.Tupper, Karl A.McBee, Jennifer L.Tilley, T. Don

Organometallics (2009) 28, 4 1252

a=29.784(6)Å   b=9.968(2)Å   c=19.424(4)Å

α=90.00°   β=96.40(3)°   γ=90.00°

C38H36NPZr

C38H36NPZr

Miller, Adam D.Johnson, Samuel A.Tupper, Karl A.McBee, Jennifer L.Tilley, T. Don

Organometallics (2009) 28, 4 1252

a=10.0566(6)Å   b=8.5559(5)Å   c=35.792(2)Å

α=90°   β=94.276(1)°   γ=90°

C50H40P2Zr

C50H40P2Zr

Miller, Adam D.Johnson, Samuel A.Tupper, Karl A.McBee, Jennifer L.Tilley, T. Don

Organometallics (2009) 28, 4 1252

a=12.5012(5)Å   b=18.8781(7)Å   c=17.1579(7)Å

α=90.00°   β=108.1810(10)°   γ=90.00°

C38H46Zr

C38H46Zr

Adam D. MillerJohn F. TannaciSamuel A. JohnsonHyuk LeeJennifer L. McBeeT. Don Tilley

Journal of the American Chemical Society (2009) 131, 4917-4927

a=20.786(7)Å   b=17.808(6)Å   c=8.229(3)Å

α=90.00°   β=90.00°   γ=90.00°

C30H26

C30H26

Adam D. MillerJohn F. TannaciSamuel A. JohnsonHyuk LeeJennifer L. McBeeT. Don Tilley

Journal of the American Chemical Society (2009) 131, 4917-4927

a=10.4214(15)Å   b=7.4290(11)Å   c=14.284(2)Å

α=90.00°   β=92.094(2)°   γ=90.00°

C38H46Zr

C38H46Zr

Adam D. MillerJohn F. TannaciSamuel A. JohnsonHyuk LeeJennifer L. McBeeT. Don Tilley

Journal of the American Chemical Society (2009) 131, 4917-4927

a=8.350(3)Å   b=11.514(4)Å   c=17.134(7)Å

α=74.700(5)°   β=80.995(5)°   γ=79.982(6)°

C51H50Zr

C51H50Zr

Adam D. MillerJohn F. TannaciSamuel A. JohnsonHyuk LeeJennifer L. McBeeT. Don Tilley

Journal of the American Chemical Society (2009) 131, 4917-4927

a=8.3410(2)Å   b=17.2024(4)Å   c=27.0985(6)Å

α=90°   β=91.702(1)°   γ=90°

C37H48Si2Zr

C37H48Si2Zr

Adam D. MillerJennifer L. McBeeT. Don Tilley

Journal of the American Chemical Society (2008) 130, 4992-4999

a=11.5076(12)Å   b=11.5693(12)Å   c=15.9984(16)Å

α=87.7130(10)°   β=69.6300(10)°   γ=60.1510(10)°

2(C35H42Si2Zr),C7

2(C35H42Si2Zr),C7

Adam D. MillerJennifer L. McBeeT. Don Tilley

Journal of the American Chemical Society (2008) 130, 4992-4999

a=7.5068(18)Å   b=11.123(3)Å   c=21.788(5)Å

α=78.214(4)°   β=83.497(4)°   γ=77.487(4)°

C39H60CrN4Ni1P3,0.5(C4H10O)

C39H60CrN4Ni1P3,0.5(C4H10O)

Laura J. CloustonRandall B. SiedschlagP. Alex RuddNora PlanasShuxian HuAdam D. MillerLaura GagliardiConnie C. Lu

Journal of the American Chemical Society (2013) 135, 13142-13148

a=11.1205(16)Å   b=14.167(2)Å   c=14.256(2)Å

α=71.694(2)°   β=83.745(2)°   γ=81.854(2)°

MnCrL

C39H60CrMnN4P3

Laura J. CloustonRandall B. SiedschlagP. Alex RuddNora PlanasShuxian HuAdam D. MillerLaura GagliardiConnie C. Lu

Journal of the American Chemical Society (2013) 135, 13142-13148

a=15.9786(18)Å   b=15.9786(18)Å   c=11.6916(13)Å

α=90.00°   β=90.00°   γ=120.00°

CoCrL neutral

C39H60CoCrN4P3

Laura J. CloustonRandall B. SiedschlagP. Alex RuddNora PlanasShuxian HuAdam D. MillerLaura GagliardiConnie C. Lu

Journal of the American Chemical Society (2013) 135, 13142-13148

a=12.3712(19)Å   b=19.416(3)Å   c=19.653(3)Å

α=113.252(2)°   β=95.561(2)°   γ=101.549(2)°

NiL

C39H63N4NiP3,0.5(C7H8)

Laura J. CloustonRandall B. SiedschlagP. Alex RuddNora PlanasShuxian HuAdam D. MillerLaura GagliardiConnie C. Lu

Journal of the American Chemical Society (2013) 135, 13142-13148

a=11.3730(10)Å   b=14.0502(11)Å   c=14.1811(10)Å

α=71.8460(10)°   β=80.4840(10)°   γ=82.2650(10)°