Structures by: Moore C. E.

Total: 404

W(CO)2(O2CMe)2(CNArDipp2)2

C68H80N2O6W

Treffly B. DitriCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 10448-10459

a=12.7672(9)Å   b=18.9332(14)Å   c=26.1549(19)Å

α=94.5690(10)°   β=90.2100(10)°   γ=101.2740(10)°

(eta6-C6H6)Mo(N2)(CNArDipp2)2

C142H178Mo2N8OSi2

Treffly B. DitriCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 10448-10459

a=12.5493(10)Å   b=12.7014(11)Å   c=22.4890(19)Å

α=74.1840(10)°   β=74.6450(10)°   γ=68.8530(10)°

(eta6-C6H6)MoI2(CNArDipp2)2

C68H80I2MoN2

Treffly B. DitriCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 10448-10459

a=15.891(9)Å   b=18.193(10)Å   c=22.629(12)Å

α=90.00°   β=110.253(7)°   γ=90.00°

Trans-MoI4(CNArDipp2)2

C39H47I2Mo0.5N

Treffly B. DitriCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 10448-10459

a=20.601(5)Å   b=16.167(4)Å   c=15.491(7)Å

α=90.00°   β=126.228(3)°   γ=90.00°

BMOF-1-dcppy-10.2EtOAc

C34H20N6O8Zn2

Phuong V. DauMin KimSergio J. GaribayFrédéric H. L. MünchCurtis E. MooreSeth M. Cohen

Inorganic Chemistry (2012) 51, 5671-5676

a=14.020(2)Å   b=15.082(2)Å   c=15.121(2)Å

α=76.892(2)°   β=86.550(2)°   γ=83.446(2)°

BMOF-1-bpdc-12.6EtOAc

C38H24N2O8Zn2

Phuong V. DauMin KimSergio J. GaribayFrédéric H. L. MünchCurtis E. MooreSeth M. Cohen

Inorganic Chemistry (2012) 51, 5671-5676

a=14.071(5)Å   b=15.265(5)Å   c=15.351(6)Å

α=88.337(13)°   β=85.779(14)°   γ=85.205(11)°

DMOF-1-dcppy-6EtOAc

C28H8N6O8Zn2

Phuong V. DauMin KimSergio J. GaribayFrédéric H. L. MünchCurtis E. MooreSeth M. Cohen

Inorganic Chemistry (2012) 51, 5671-5676

a=15.1370(18)Å   b=15.1370(18)Å   c=9.6187(12)Å

α=90.00°   β=90.00°   γ=90.00°

DMOF-1-bpdc-6EtOAc

C36H16N2O8Zn2

Phuong V. DauMin KimSergio J. GaribayFrédéric H. L. MünchCurtis E. MooreSeth M. Cohen

Inorganic Chemistry (2012) 51, 5671-5676

a=15.210(3)Å   b=15.210(3)Å   c=9.6282(19)Å

α=90.00°   β=90.00°   γ=90.00°

C54H32MnN8(0.125(CH2Cl2))

C54H32MnN8(0.125(CH2Cl2))

Jordan L. ArthurCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2011) 50, 2735-2737

a=17.6731(15)Å   b=22.610(2)Å   c=11.5115(9)Å

α=90.00°   β=107.230(6)°   γ=90.00°

C16H18Co2N10S4

C16H18Co2N10S4

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2011) 50, 10546-10548

a=9.6785(5)Å   b=13.9686(8)Å   c=19.8210(11)Å

α=90.00°   β=91.3540(10)°   γ=90.00°

C68H110BFeNO2P3

C68H110BFeNO2P3

Caroline T. SaoumaCurtis E. MooreArnold L. RheingoldJonas C. Peters

Inorganic Chemistry (2011) 50, 11285-11287

a=14.5464(9)Å   b=27.6742(18)Å   c=17.3460(11)Å

α=90.00°   β=112.1960(10)°   γ=90.00°

C118H210B2Fe2N2O7P6

C118H210B2Fe2N2O7P6

Caroline T. SaoumaCurtis E. MooreArnold L. RheingoldJonas C. Peters

Inorganic Chemistry (2011) 50, 11285-11287

a=14.1982(3)Å   b=15.5521(3)Å   c=15.6310(3)Å

α=114.5230(10)°   β=107.3310(10)°   γ=91.1740(10)°

C118H196B2Fe2N2O4P6

C118H196B2Fe2N2O4P6

Caroline T. SaoumaCurtis E. MooreArnold L. RheingoldJonas C. Peters

Inorganic Chemistry (2011) 50, 11285-11287

a=18.2270(6)Å   b=19.7406(8)Å   c=31.1376(12)Å

α=90.00°   β=90.833(3)°   γ=90.00°

2,5-Mes2py

C23H25N

Julia M. StauberAndrew L. WadlerCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 7309-7316

a=8.1239(10)Å   b=10.2042(13)Å   c=12.2561(16)Å

α=80.309(2)°   β=76.989(2)°   γ=67.065(2)°

[Cu(2,5-Mes2py)2]OTf

C47H50CuF3N2O3S

Julia M. StauberAndrew L. WadlerCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 7309-7316

a=39.15(2)Å   b=11.714(6)Å   c=18.342(10)Å

α=90.00°   β=94.148(13)°   γ=90.00°

Cu(OTf)2(2,5-Mes2py)2

C57H59CuF6N2O6S2

Julia M. StauberAndrew L. WadlerCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 7309-7316

a=11.750(3)Å   b=13.467(3)Å   c=17.713(4)Å

α=92.256(3)°   β=90.538(3)°   γ=105.233(3)°

(mu-I)2[CoI(2,5-Mes2py)]2

C46H50Co2I4N2

Julia M. StauberAndrew L. WadlerCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 7309-7316

a=21.544(6)Å   b=14.986(4)Å   c=16.980(5)Å

α=90.00°   β=120.478(3)°   γ=90.00°

CoBr2(THF)(2,5-Mes2py)2

C27H33Br2CoNO

Julia M. StauberAndrew L. WadlerCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 7309-7316

a=18.454(5)Å   b=9.218(2)Å   c=16.758(4)Å

α=90.00°   β=109.199(3)°   γ=90.00°

CoI2(2,5-Mes2py)2

C46H50CoI2N2

Julia M. StauberAndrew L. WadlerCurtis E. MooreArnold L. RheingoldJoshua S. Figueroa

Inorganic Chemistry (2011) 50, 7309-7316

a=23.298(3)Å   b=20.346(2)Å   c=18.482(2)Å

α=90.00°   β=107.507(2)°   γ=90.00°

PdCl(allyl)(CNArDipp2)

C34H42ClNPd,1/2(C4H8O)

Barnett, Brandon R.Labios, Liezel A.Stauber, Julia M.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 4 944

a=22.184(6)Å   b=18.952(5)Å   c=16.253(5)Å

α=90.00°   β=105.030(3)°   γ=90.00°

[(CNArDipp2)Pd]2(u-allyl)(u-OtBu)

C69H88N2OPd2,C6H5F

Barnett, Brandon R.Labios, Liezel A.Stauber, Julia M.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 4 944

a=9.3164(10)Å   b=12.2291(13)Å   c=16.0753(17)Å

α=107.346(3)°   β=92.444(3)°   γ=105.882(3)°

[(CNArDipp2)Pd]2(u-allyl)(u-LDA)

C71H93N3Pd2

Barnett, Brandon R.Labios, Liezel A.Stauber, Julia M.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 4 944

a=19.5686(13)Å   b=16.9767(11)Å   c=19.6154(13)Å

α=90°   β=92.8850(10)°   γ=90°

Pd3(u-CO)3(CNArDipp2)3

C96H111N3O3Pd3,C4H10O

Barnett, Brandon R.Labios, Liezel A.Stauber, Julia M.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 4 944

a=15.618(8)Å   b=16.161(8)Å   c=20.549(10)Å

α=80.016(7)°   β=84.921(7)°   γ=65.649(6)°

Pd3(eta2-Dipp-u-CNArDipp2)3

C93H111N3Pd3,13(C4H8O)

Barnett, Brandon R.Labios, Liezel A.Stauber, Julia M.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 4 944

a=18.1967(5)Å   b=18.1967(5)Å   c=45.5371(16)Å

α=90°   β=90°   γ=120°

PdBr(m-Xyl)(CNArDipp2)2

C70H83BrN2Pd,0.5(C4H10O)

Barnett, Brandon R.Labios, Liezel A.Stauber, Julia M.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 4 944

a=10.9266(13)Å   b=14.4884(18)Å   c=22.065(3)Å

α=72.626(2)°   β=78.681(2)°   γ=85.724(2)°

C70H80MnN3O4,2(C4H10O)

C70H80MnN3O4,2(C4H10O)

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=15.7361(3)Å   b=17.6996(3)Å   c=26.0679(5)Å

α=90°   β=102.6390(10)°   γ=90°

2(C69H83MnN2O4),C4H9O

2(C69H83MnN2O4),C4H9O

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=25.996(2)Å   b=21.874(2)Å   c=25.178(2)Å

α=90°   β=116.3112(13)°   γ=90°

(k2-F3CSO3BH3)-Mn(CO)2(CNArDipp2)2

C65H77BF3MnN2O5S

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=13.1452(7)Å   b=15.6184(9)Å   c=15.2093(7)Å

α=90°   β=93.025(2)°   γ=90°

C49H37BF15N

C49H37BF15N

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=12.8109(16)Å   b=22.635(3)Å   c=15.620(2)Å

α=90°   β=106.705(7)°   γ=90°

C72H94MnN2O4,C32H12BF24

C72H94MnN2O4,C32H12BF24

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=25.384(3)Å   b=16.256(2)Å   c=49.409(6)Å

α=90°   β=101.988(6)°   γ=90°

C66H77MnN2O4

C66H77MnN2O4

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=16.862(2)Å   b=16.736(2)Å   c=41.454(5)Å

α=90°   β=100.020(2)°   γ=90°

C69H82.47F3MnN2O6S,C4H10O

C69H82.47F3MnN2O6S,C4H10O

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=19.5867(17)Å   b=15.1995(13)Å   c=23.5502(17)Å

α=90°   β=96.7370(12)°   γ=90°

C72H79MnN2O5,2(C4H10O)

C72H79MnN2O5,2(C4H10O)

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=12.2792(15)Å   b=16.609(2)Å   c=19.630(3)Å

α=97.684(4)°   β=91.435(4)°   γ=96.967(4)°

Mn(k2-benzoate)CO2(CNArDipp2)2

C71H79MnN2O4,C3H3

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=46.2914(10)Å   b=16.5737(4)Å   c=16.9876(4)Å

α=90°   β=104.9100(10)°   γ=90°

0.5(C136H168K2Mn2N4O6)

0.5(C136H168K2Mn2N4O6)

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=19.142(5)Å   b=27.610(8)Å   c=27.492(8)Å

α=90°   β=104.977(4)°   γ=90°

C87H83BF15MnN2O4,0.5(C4H10O)

C87H83BF15MnN2O4,0.5(C4H10O)

Agnew, Douglas W.Moore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Organometallics (2017) 36, 2 363

a=14.7941(8)Å   b=24.7433(13)Å   c=26.5070(14)Å

α=97.8460(10)°   β=98.6420(10)°   γ=90.6020(10)°

C56H56N4P4Pd,2(BF4),2(C2H3N)

C56H56N4P4Pd,2(BF4),2(C2H3N)

Seu, Candace S.Ung, DavidDoud, Michael D.Moore, Curtis E.Rheingold, Arnold L.Kubiak, Clifford P.

Organometallics (2013) 32, 16 4556

a=10.2698(5)Å   b=19.0572(11)Å   c=29.2752(17)Å

α=90.00°   β=95.0210(10)°   γ=90.00°

C56H80N4P4Pd,2(BF4),4(C2H3N)

C56H80N4P4Pd,2(BF4),4(C2H3N)

Seu, Candace S.Ung, DavidDoud, Michael D.Moore, Curtis E.Rheingold, Arnold L.Kubiak, Clifford P.

Organometallics (2013) 32, 16 4556

a=9.5588(7)Å   b=12.4960(9)Å   c=14.8568(11)Å

α=94.027(3)°   β=99.551(2)°   γ=97.422(2)°

2(BF4),C60H64N4P4Pd,2(C2H3N)

2(BF4),C60H64N4P4Pd,2(C2H3N)

Seu, Candace S.Ung, DavidDoud, Michael D.Moore, Curtis E.Rheingold, Arnold L.Kubiak, Clifford P.

Organometallics (2013) 32, 16 4556

a=10.5769(5)Å   b=24.5160(8)Å   c=24.1638(9)Å

α=90.00°   β=99.188(2)°   γ=90.00°

C36H48N4P4Pd,2(BF4),4(C2H3N)

C36H48N4P4Pd,2(BF4),4(C2H3N)

Seu, Candace S.Ung, DavidDoud, Michael D.Moore, Curtis E.Rheingold, Arnold L.Kubiak, Clifford P.

Organometallics (2013) 32, 16 4556

a=14.0539(7)Å   b=10.0080(5)Å   c=18.7335(10)Å

α=90.00°   β=108.980(2)°   γ=90.00°

C24H30Ge2

C24H30Ge2

Schrick, Erin K.Forget, Trevor J.Roewe, Kimberly D.Schrick, Aaron C.Moore, Curtis E.Golen, James A.Rheingold, Arnold L.Materer, Nicholas F.Weinert, Charles S.

Organometallics (2013) 32, 7 2245

a=8.2473(8)Å   b=9.8391(10)Å   c=15.0469(13)Å

α=87.343(5)°   β=85.481(5)°   γ=65.243(5)°

C30H42Ge2

C30H42Ge2

Schrick, Erin K.Forget, Trevor J.Roewe, Kimberly D.Schrick, Aaron C.Moore, Curtis E.Golen, James A.Rheingold, Arnold L.Materer, Nicholas F.Weinert, Charles S.

Organometallics (2013) 32, 7 2245

a=24.203(3)Å   b=9.2500(11)Å   c=24.860(3)Å

α=90.00°   β=94.039(2)°   γ=90.00°

C42H62Ge4

C42H62Ge4

Komanduri, Sangeetha P.Shumaker, F. AlexanderRoewe, Kimberly D.Wolf, MelanieUhlig, FrankMoore, Curtis E.Rheingold, Arnold L.Weinert, Charles S.

Organometallics (2016) 35, 18 3240

a=9.4578(17)Å   b=10.709(2)Å   c=11.485(2)Å

α=106.109(5)°   β=99.150(5)°   γ=108.601(6)°

SK-218

C36H32Ge3

Komanduri, Sangeetha P.Shumaker, F. AlexanderRoewe, Kimberly D.Wolf, MelanieUhlig, FrankMoore, Curtis E.Rheingold, Arnold L.Weinert, Charles S.

Organometallics (2016) 35, 18 3240

a=9.6058(6)Å   b=10.9421(6)Å   c=14.6843(9)Å

α=89.045(2)°   β=83.682(2)°   γ=85.038(2)°

C54H72Ge5

C54H72Ge5

Komanduri, Sangeetha P.Shumaker, F. AlexanderRoewe, Kimberly D.Wolf, MelanieUhlig, FrankMoore, Curtis E.Rheingold, Arnold L.Weinert, Charles S.

Organometallics (2016) 35, 18 3240

a=16.5478(11)Å   b=12.6673(9)Å   c=25.3940(18)Å

α=90°   β=106.184(2)°   γ=90°

C31H24FIrN4S2

C31H24FIrN4S2

Maity, AyanStanek, Robert J.Anderson, Bryce L.Zeller, MatthiasHunter, Allen D.Moore, Curtis E.Rheingold, Arnold L.Gray, Thomas G.

Organometallics (2015) 34, 1 109

a=10.291(3)Å   b=17.035(5)Å   c=15.064(4)Å

α=90°   β=95.208(4)°   γ=90°

C52H32F2Ir2N4S4,2(C6H6)

C52H32F2Ir2N4S4,2(C6H6)

Maity, AyanStanek, Robert J.Anderson, Bryce L.Zeller, MatthiasHunter, Allen D.Moore, Curtis E.Rheingold, Arnold L.Gray, Thomas G.

Organometallics (2015) 34, 1 109

a=14.7816(5)Å   b=14.7816(5)Å   c=48.415(3)Å

α=90°   β=90°   γ=90°

C31H24ClIrN4S2

C31H24ClIrN4S2

Maity, AyanStanek, Robert J.Anderson, Bryce L.Zeller, MatthiasHunter, Allen D.Moore, Curtis E.Rheingold, Arnold L.Gray, Thomas G.

Organometallics (2015) 34, 1 109

a=10.399(6)Å   b=16.928(9)Å   c=15.294(8)Å

α=90°   β=94.013(7)°   γ=90°

C37H29IrN4S3

C37H29IrN4S3

Maity, AyanStanek, Robert J.Anderson, Bryce L.Zeller, MatthiasHunter, Allen D.Moore, Curtis E.Rheingold, Arnold L.Gray, Thomas G.

Organometallics (2015) 34, 1 109

a=16.573(2)Å   b=11.8257(15)Å   c=16.296(2)Å

α=90°   β=98.460(2)°   γ=90°

C31H24Cl0.13IrN6.6S2

C31H24Cl0.13IrN6.6S2

Maity, AyanStanek, Robert J.Anderson, Bryce L.Zeller, MatthiasHunter, Allen D.Moore, Curtis E.Rheingold, Arnold L.Gray, Thomas G.

Organometallics (2015) 34, 1 109

a=10.204(4)Å   b=17.300(8)Å   c=15.848(7)Å

α=90°   β=91.957(7)°   γ=90°

C54H80Cl2Ir2N6,C4H8O2,2(F6P)

C54H80Cl2Ir2N6,C4H8O2,2(F6P)

Specht, Zephen G.Grotjahn, Douglas B.Moore, Curtis E.Rheingold, Arnold L.

Organometallics (2013) 32, 21 6400

a=12.0360(7)Å   b=12.5925(8)Å   c=13.0880(8)Å

α=80.127(2)°   β=63.055(2)°   γ=68.254(2)°

C23H31ClIrN3,1/6(C6H14)

C23H31ClIrN3,1/6(C6H14)

Specht, Zephen G.Grotjahn, Douglas B.Moore, Curtis E.Rheingold, Arnold L.

Organometallics (2013) 32, 21 6400

a=21.557(4)Å   b=21.557(4)Å   c=26.611(5)Å

α=90°   β=90°   γ=120°

Olex2 1.2-beta (compiled Apr 23 2013 17:59:47, GUI svn.r4466)

C34H34CoO2PSSi

Baldridge, Kim K.Bunker, Kevin D.Vélez, Carmen L.Holland, Ryan L.Rheingold, Arnold L.Moore, Curtis E.O’Connor, Joseph M.

Organometallics (2013) 32, 19 5473

a=10.5612(12)Å   b=17.853(2)Å   c=16.0829(19)Å

α=90°   β=95.579(2)°   γ=90°

Olex2 1.2-beta (compiled Apr 23 2013 17:59:47, GUI svn.r4466)

C41H48CoO2PSSi

Baldridge, Kim K.Bunker, Kevin D.Vélez, Carmen L.Holland, Ryan L.Rheingold, Arnold L.Moore, Curtis E.O’Connor, Joseph M.

Organometallics (2013) 32, 19 5473

a=10.5763(16)Å   b=10.6836(16)Å   c=16.640(3)Å

α=93.231(2)°   β=92.647(2)°   γ=92.913(2)°

Mn2(CO)7(CNArDipp2)3

C100H111Mn2N3O7

Agnew, Douglas W.Sampson, Matthew D.Moore, Curtis E.Rheingold, Arnold L.Kubiak, Clifford P.Figueroa, Joshua S.

Inorganic chemistry (2016) 55, 23 12400-12408

a=25.964(3)Å   b=11.7576(13)Å   c=29.248(4)Å

α=90°   β=90.045(3)°   γ=90°

IMn(CO)3(CNArDipp2)2(C4H8O)

C65H74IMnN2O3,2(C4H8O)

Agnew, Douglas W.Sampson, Matthew D.Moore, Curtis E.Rheingold, Arnold L.Kubiak, Clifford P.Figueroa, Joshua S.

Inorganic chemistry (2016) 55, 23 12400-12408

a=16.7392(14)Å   b=17.0282(14)Å   c=24.298(2)Å

α=90°   β=102.184(3)°   γ=90°

Mn2(CO)8(CNArDipp2)2

C70H74Mn2N2O8,2(C4H10O)

Agnew, Douglas W.Sampson, Matthew D.Moore, Curtis E.Rheingold, Arnold L.Kubiak, Clifford P.Figueroa, Joshua S.

Inorganic chemistry (2016) 55, 23 12400-12408

a=17.3739(16)Å   b=25.063(3)Å   c=17.1374(17)Å

α=90°   β=90°   γ=90°

Cr(CO)5(CNArMes2)

C30H25CrNO5

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=10.0406(6)Å   b=10.2030(7)Å   c=15.5732(14)Å

α=101.2300(10)°   β=92.8150(10)°   γ=118.3960(10)°

Cr(CO)5(pMeCNArMes2)

C31H27CrNO5

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=11.4647(7)Å   b=19.4477(11)Å   c=12.6957(8)Å

α=90°   β=95.2560(10)°   γ=90°

CNArTripp2

C37H49N

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=10.9087(13)Å   b=12.0442(14)Å   c=25.283(3)Å

α=90°   β=90°   γ=90°

Cr(CO)5(CNArClips)

C28H17Cl4CrNO5

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=6.4468(4)Å   b=12.9490(8)Å   c=17.0430(10)Å

α=94.610(3)°   β=91.736(3)°   γ=96.334(3)°

Cr(CO)5(CN(pF-ArDArF))

C28H8CrF13NO5

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=13.9002(5)Å   b=13.9199(6)Å   c=14.5750(5)Å

α=90°   β=93.4920(11)°   γ=90°

Cr(CO)5(CN(3,5-(CF3)2C6H3))

C14H3CrF6NO5

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=16.7891(12)Å   b=6.2223(4)Å   c=31.887(2)Å

α=90°   β=99.575(2)°   γ=90°

Cr(CO)5(CN(pMeArDArF2))

C29H11CrF12NO5

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=11.3248(3)Å   b=12.6913(4)Å   c=20.7094(7)Å

α=90°   β=91.4627(9)°   γ=90°

Cr(CO)5(CNArDArF2)

C28H9CrF12NO5

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=13.7139(9)Å   b=13.8037(11)Å   c=14.7183(12)Å

α=90°   β=91.201(3)°   γ=90°

Cr(CO)5(CNArTripp2)'

C42H49CrNO5

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=26.7041(14)Å   b=10.9879(6)Å   c=27.4160(15)Å

α=90°   β=90.041(3)°   γ=90°

Cr(CO)5(CNXylyl)

0.5(C14H9CrNO5)

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=7.3313(3)Å   b=13.1945(6)Å   c=14.5373(6)Å

α=90°   β=90°   γ=90°

Cr(CO)5(CNArDipp2)

C18H18.5Cr0.5N0.5O2.5,C3H2.5F0.5

Carpenter, Alex E.Mokhtarzadeh, Charles C.Ripatti, Donald S.Havrylyuk, IrenaKamezawa, RyoMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 6 2936-2944

a=8.6921(9)Å   b=21.885(2)Å   c=10.1779(11)Å

α=90°   β=92.318(2)°   γ=90°

[Na(18-c-6)][Fe(azulene)(CNArMes2)2]

C87H99FeN3NaO6,0.5(C4H10O)

Mokhtarzadeh, Charles C.Margulieux, Grant W.Carpenter, Alex E.Weidemann, NilsMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 11 5579-5587

a=16.260(2)Å   b=16.648(3)Å   c=18.225(3)Å

α=64.902(5)°   β=89.753(6)°   γ=62.646(5)°

Fe(CO)4(CNArMes2)

C29H25FeNO4

Mokhtarzadeh, Charles C.Margulieux, Grant W.Carpenter, Alex E.Weidemann, NilsMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 11 5579-5587

a=8.2857(3)Å   b=18.0545(7)Å   c=8.6241(3)Å

α=90°   β=96.625(2)°   γ=90°

Na2[Fe(CNArMes2)4]

C100H100FeN4Na2

Mokhtarzadeh, Charles C.Margulieux, Grant W.Carpenter, Alex E.Weidemann, NilsMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 11 5579-5587

a=27.1109(10)Å   b=11.8497(4)Å   c=27.5348(10)Å

α=90°   β=115.721(2)°   γ=90°

Cis,cis,trans-FeI2(CO)2(CNArMes2)2

C52H50FeI2N2O2

Mokhtarzadeh, Charles C.Margulieux, Grant W.Carpenter, Alex E.Weidemann, NilsMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 11 5579-5587

a=13.5946(5)Å   b=14.6648(5)Å   c=15.0797(5)Å

α=64.878(2)°   β=64.999(2)°   γ=64.8240(10)°

Fe(CO)3(CNArMes2)2

C53H50FeN2O3

Mokhtarzadeh, Charles C.Margulieux, Grant W.Carpenter, Alex E.Weidemann, NilsMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 11 5579-5587

a=26.7165(11)Å   b=13.6599(5)Å   c=27.7314(11)Å

α=90°   β=117.941(3)°   γ=90°

Na[HFe(CNArMes2)4]

C100H101FeN4Na,C5H12

Mokhtarzadeh, Charles C.Margulieux, Grant W.Carpenter, Alex E.Weidemann, NilsMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 11 5579-5587

a=13.4873(10)Å   b=27.8985(17)Å   c=22.7298(14)Å

α=90°   β=90.479(5)°   γ=90°

Fe(N2)(CNArMes2)4

C100H100FeN6

Mokhtarzadeh, Charles C.Margulieux, Grant W.Carpenter, Alex E.Weidemann, NilsMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 11 5579-5587

a=16.195(2)Å   b=23.161(3)Å   c=21.453(3)Å

α=90°   β=97.426(6)°   γ=90°

[Fe(CNArMes2)]2

C50H50Fe2N2

Mokhtarzadeh, Charles C.Margulieux, Grant W.Carpenter, Alex E.Weidemann, NilsMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 11 5579-5587

a=7.8487(9)Å   b=21.294(3)Å   c=11.8949(14)Å

α=90°   β=95.471(2)°   γ=90°

Pd(k1-N-m-BrArNO)2(CNArDipp2)2

C74H82Br2N4O2Pd,2(C4H10O)

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=12.130(2)Å   b=24.738(4)Å   c=12.783(2)Å

α=90°   β=99.112(3)°   γ=90°

Pd(k1-N-m-ClC6H4NO)2(CNArDipp2)2

C74H82Cl2N4O2Pd,2(C4H10O)

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=21.312(5)Å   b=14.111(4)Å   c=25.056(6)Å

α=90°   β=97.197(3)°   γ=90°

Pd(k1-N-p-BrArNO)2(CNArDipp2)2

C74H82Br2N4O2Pd,2(C4H10O)

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=14.1466(14)Å   b=17.5910(18)Å   c=17.0139(18)Å

α=90°   β=114.0900(10)°   γ=90°

Pd(k1-N-p-ClC6H4NO)2(CNArDipp2)2

C74H82Cl2N4O2Pd,2(C4H10O)

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=13.967(3)Å   b=17.490(4)Å   c=16.936(5)Å

α=90°   β=114.091(3)°   γ=90°

Pd(k1-N-p-FC6H4NO)2(CNArDipp2)2

C74H82F2N4O2Pd,2(C4H10O)

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=13.8874(10)Å   b=17.1486(12)Å   c=16.7177(12)Å

α=90°   β=113.685(3)°   γ=90°

Pd(k1-N-p-PhC6H4NO)2(CNArDipp2)2

C86H92N4O2Pd,4(C4H10O)

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=31.302(3)Å   b=16.7984(13)Å   c=16.9621(13)Å

α=90°   β=101.541(4)°   γ=90°

Pd(k1-N-p-CNC6H4NO)2(CNArDipp2)2

C76H82N6O2Pd,3(C4H10O)

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=14.7020(14)Å   b=16.9580(15)Å   c=16.2845(15)Å

α=90°   β=112.810(5)°   γ=90°

Pd(k1-N-p-COHC6H4NO)2(CNArDipp2)2

C76H84N4O4Pd

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=14.3005(9)Å   b=17.1080(11)Å   c=16.6238(11)Å

α=90°   β=113.702(2)°   γ=90°

Pd(h2-N,O-m-ClC6H4NO)(CNArDipp2)2

C68H78ClN3OPd

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=25.5580(7)Å   b=11.7890(3)Å   c=20.0170(5)Å

α=90°   β=100.3930(11)°   γ=90°

Pd(h2-N,O-PhNO)(CNArDipp2)2

C68H79N3OPd

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=25.3884(11)Å   b=11.7589(5)Å   c=19.8229(9)Å

α=90°   β=98.7240(10)°   γ=90°

Pd(h2-N,O-m-BrC6H4NO)(CNArDipp2)2

C68H78BrN3OPd

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=25.8348(8)Å   b=11.8191(3)Å   c=20.1027(5)Å

α=90°   β=102.2680(10)°   γ=90°

Pd(h2-N,O-m-Me-C6H4NO)(CNArDipp2)2

C69H81N3OPd

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=11.7787(7)Å   b=13.4861(8)Å   c=20.8151(13)Å

α=72.022(2)°   β=77.910(2)°   γ=76.771(2)°

Pd(m-C(O)H-C6H4NO)(CNArDipp2)2

C69H79N3O2Pd

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=25.6611(10)Å   b=11.7309(4)Å   c=20.0171(8)Å

α=90°   β=99.0140(10)°   γ=90°

Pd(h2-N,O-p-FC6H4NO)(CNArDipp2)2

C68H78FN3OPd,C6H6

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=14.0835(8)Å   b=20.4568(8)Å   c=21.9700(11)Å

α=90°   β=95.090(3)°   γ=90°

Pd(h2-N,O-p-ClC6H4NO)(CNArDipp2)2

C68H78ClN3OPd,0.5(C6H6)

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=16.7271(11)Å   b=17.1511(14)Å   c=21.9018(15)Å

α=90°   β=93.309(4)°   γ=90°

OCNArDipp2

C31H37NO,CH2Cl2

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=18.3452(3)Å   b=8.21170(10)Å   c=20.3727(3)Å

α=90°   β=104.6320(10)°   γ=90°

Pd(h2-N,O-p-Me-C6H4NO)(CNArDipp2)2

C69H81N3OPd,C6H6

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=14.2644(8)Å   b=20.3118(8)Å   c=22.2729(10)Å

α=90°   β=96.404(3)°   γ=90°

[Pd(PhNO)(CNArDipp2)]3

C111H126N6O3Pd3

Barnett, Brandon R.Labios, Liezel A.Moore, Curtis E.England, JasonRheingold, Arnold L.Wieghardt, KarlFigueroa, Joshua S.

Inorganic chemistry (2015) 54, 14 7110-7121

a=17.368(3)Å   b=18.616(3)Å   c=30.754(6)Å

α=90°   β=97.594(9)°   γ=90°

C90H146B20Cl2O2P2Rh2

C90H146B20Cl2O2P2Rh2

Lugo, Christopher A.Moore, Curtis E.Rheingold, Arnold L.Lavallo, Vincent

Inorganic chemistry (2015) 54, 5 2094

a=10.435(3)Å   b=30.802(7)Å   c=15.579(4)Å

α=90.00°   β=104.357(6)°   γ=90.00°

Cyclo-CNArMes2_imine

C25H25N

Mokhtarzadeh, Charles C.Margulieux, Grant W.Carpenter, Alex E.Weidemann, NilsMoore, Curtis E.Rheingold, Arnold L.Figueroa, Joshua S.

Inorganic chemistry (2015) 54, 11 5579-5587

a=13.7638(11)Å   b=7.2450(5)Å   c=18.9715(15)Å

α=90°   β=96.205(3)°   γ=90°

C31H56B2P2

C31H56B2P2

Chapp, Timothy W.Schoenfeld, Adam J.Sanderson, Matthew D.Chang, Cory L.Glueck, David S.Golen, James A.Moore, Curtis E.Rheingold, Arnold L.

Organometallics (2012) 31, 15 5573

a=9.2548(7)Å   b=24.9766(18)Å   c=14.0908(10)Å

α=90.00°   β=91.1830(10)°   γ=90.00°

C57H72P4Pt

C57H72P4Pt

Chapp, Timothy W.Schoenfeld, Adam J.Sanderson, Matthew D.Chang, Cory L.Glueck, David S.Golen, James A.Moore, Curtis E.Rheingold, Arnold L.

Organometallics (2012) 31, 15 5573

a=33.135(4)Å   b=9.8628(10)Å   c=18.4542(19)Å

α=90.00°   β=121.312(2)°   γ=90.00°

C61H78F6O6P4PtS2

C61H78F6O6P4PtS2

Chapp, Timothy W.Schoenfeld, Adam J.Sanderson, Matthew D.Chang, Cory L.Glueck, David S.Golen, James A.Moore, Curtis E.Rheingold, Arnold L.

Organometallics (2012) 31, 15 5573

a=11.915(7)Å   b=13.515(8)Å   c=21.619(13)Å

α=73.777(7)°   β=77.495(8)°   γ=68.875(9)°

C65H88F6O7P4PtS2

C65H88F6O7P4PtS2

Chapp, Timothy W.Schoenfeld, Adam J.Sanderson, Matthew D.Chang, Cory L.Glueck, David S.Golen, James A.Moore, Curtis E.Rheingold, Arnold L.

Organometallics (2012) 31, 15 5573

a=13.4616(2)Å   b=13.4616(2)Å   c=66.2129(15)Å

α=90.00°   β=90.00°   γ=120.00°