Structures by: Milstein D.
Total: 255
C25H39N2O3PRu
C25H39N2O3PRu
Chemical Science (2020)
a=9.5765(2)Å b=12.9092(3)Å c=21.0501(5)Å
α=90° β=100.084(2)° γ=90°
C22H31N2O3PRu
C22H31N2O3PRu
Nature Chemistry (2013) 5, 122-125
a=8.2460(16)Å b=16.988(3)Å c=16.411(3)Å
α=90.00° β=101.30(3)° γ=90.00°
C37H54IrNP2
C37H54IrNP2
Chemical communications (Cambridge, England) (2018) 54, 42 5365-5368
a=9.1192(4)Å b=10.6683(5)Å c=17.8231(5)Å
α=93.180(3)° β=92.823(3)° γ=95.767(4)°
C28H41FeN3OP,BF4
C28H41FeN3OP,BF4
Catal. Sci. Technol. (2016) 6, 12 4428
a=17.8880(11)Å b=8.6252(5)Å c=21.0338(13)Å
α=90.00° β=111.094(2)° γ=90.00°
C26H42NO4P2Re,CH2Cl2
C26H42NO4P2Re,CH2Cl2
Chemical Science (2014) 5, 5 2043
a=13.23210(10)Å b=15.70480(10)Å c=16.7382(2)Å
α=90.00° β=114.8330(5)° γ=90.00°
C20H37N2OPRu
C20H37N2OPRu
Nature chemistry (2011) 3, 8 609-614
a=12.710(3)Å b=13.992(3)Å c=12.838(3)Å
α=90.00° β=108.43(3)° γ=90.00°
C20H35N2OPRh,C32H12BF24
C20H35N2OPRh,C32H12BF24
Dalton transactions (Cambridge, England : 2003) (2020) 49, 21 7093-7108
a=12.2707(5)Å b=36.6662(14)Å c=12.3316(5)Å
α=90° β=92.2640(10)° γ=90°
C21H35F3N2O4PRhS
C21H35F3N2O4PRhS
Dalton transactions (Cambridge, England : 2003) (2020) 49, 21 7093-7108
a=10.9238(5)Å b=12.2412(5)Å c=19.4780(8)Å
α=90° β=99.9660(10)° γ=90°
C20H35ClNPRh
C20H35ClNPRh
Dalton transactions (Cambridge, England : 2003) (2020) 49, 21 7093-7108
a=12.2786(5)Å b=13.4049(5)Å c=13.7401(5)Å
α=90° β=105.066(4)° γ=90°
C20H35ClN2OPRh
C20H35ClN2OPRh
Dalton transactions (Cambridge, England : 2003) (2020) 49, 21 7093-7108
a=10.8734(5)Å b=15.0578(6)Å c=14.9966(7)Å
α=90° β=110.744(5)° γ=90°
C22H38N3OPRh,C32H12BF24
C22H38N3OPRh,C32H12BF24
Dalton transactions (Cambridge, England : 2003) (2020) 49, 21 7093-7108
a=12.9981(4)Å b=14.4017(5)Å c=16.7912(5)Å
α=85.1790(10)° β=67.2410(10)° γ=84.6680(10)°
2(C22H34MnN2O4P),C7H8
2(C22H34MnN2O4P),C7H8
Dalton transactions (Cambridge, England : 2003) (2019) 48, 39 14580-14584
a=18.0388(14)Å b=10.3918(9)Å c=14.3680(12)Å
α=90° β=105.838(2)° γ=90°
C22H36MnN2O4P
C22H36MnN2O4P
Dalton transactions (Cambridge, England : 2003) (2019) 48, 39 14580-14584
a=12.713(3)Å b=14.096(3)Å c=13.603(3)Å
α=90° β=102.34(3)° γ=90°
C21H36MnN2O2P
C21H36MnN2O2P
Dalton transactions (Cambridge, England : 2003) (2019) 48, 39 14580-14584
a=12.5824(8)Å b=14.2411(7)Å c=13.1504(8)Å
α=90° β=107.519(7)° γ=90°
C22H34MnN2O4P
C22H34MnN2O4P
Dalton transactions (Cambridge, England : 2003) (2019) 48, 39 14580-14584
a=11.0332(4)Å b=11.6911(4)Å c=17.3894(7)Å
α=90° β=96.460(4)° γ=90°
C15H20N2
C15H20N2
Chemical Communications (2017)
a=14.2280(2)Å b=28.0486(5)Å c=10.06860(15)Å
α=90° β=98.7934(13)° γ=90°
C26H28F6N2O4Pd2
C26H28F6N2O4Pd2
Chemical Communications (1999) 4 357
a=17.044(3)Å b=16.976(3)Å c=19.725(4)Å
α=90.00° β=97.75(3)° γ=90.00°
C26H41Br2FeNP2
C26H41Br2FeNP2
Chemical communications (Cambridge, England) (2016) 52, 9 1812-1815
a=12.014(2)Å b=15.518(3)Å c=15.750(2)Å
α=90.00° β=90.00° γ=90.00°
C12H24BF4O2RhS2
C12H24BF4O2RhS2
Chemical Communications (2002) 7 710
a=12.317(3)Å b=24.171(5)Å c=11.808(2)Å
α=90.00° β=90.00° γ=90.00°
C6H18ClO3RhS3
C6H18ClO3RhS3
Chemical Communications (2002) 7 710
a=5.7250(11)Å b=15.932(3)Å c=14.368(3)Å
α=90.00° β=90.58(3)° γ=90.00°
C8H24F6O4PRhS4
C8H24F6O4PRhS4
Chemical Communications (2002) 7 710
a=8.8580(18)Å b=5.9930(12)Å c=19.061(4)Å
α=90.00° β=92.50(3)° γ=90.00°
C17.5H32Cl2O3Rh2S3
C17.5H32Cl2O3Rh2S3
Chemical Communications (2002) 7 710
a=6.1740(12)Å b=12.026(2)Å c=17.111(3)Å
α=88.14(3)° β=87.25(3)° γ=82.67(3)°
C16H25NORhS2,BF4
C16H25NORhS2,BF4
Dalton Transactions (2008) 24 3226-3234
a=8.8613(3)Å b=10.6136(2)Å c=22.1569(7)Å
α=90.00° β=99.1505(10)° γ=90.00°
C30H50Ir2N2S4,2(B1F4),CH2Cl2
C30H50Ir2N2S4,2(B1F4),CH2Cl2
Dalton Transactions (2008) 24 3226-3234
a=11.410(2)Å b=20.324(4)Å c=21.390(4)Å
α=90.00° β=90.00° γ=90.00°
C16H25IrNOS2,BF4
C16H25IrNOS2,BF4
Dalton Transactions (2008) 24 3226-3234
a=8.8320(18)Å b=10.614(2)Å c=22.104(4)Å
α=90.00° β=99.40(3)° γ=90.00°
C23H39IrNS2,BF4
C23H39IrNS2,BF4
Dalton Transactions (2008) 24 3226-3234
a=17.5452(6)Å b=9.7839(3)Å c=15.3976(4)Å
α=90.00° β=93.981(2)° γ=90.00°
C43H80Cl4N6P2Ru2
C43H80Cl4N6P2Ru2
Dalton transactions (Cambridge, England : 2003) (2007) 1 107-113
a=19.296(4)Å b=11.907(2)Å c=23.054(5)Å
α=90.00° β=94.87(3)° γ=90.00°
C38H50ClF3N2O3P2RuS
C38H50ClF3N2O3P2RuS
Dalton transactions (Cambridge, England : 2003) (2007) 1 107-113
a=12.357(3)Å b=16.863(3)Å c=19.073(4)Å
α=90.00° β=95.09(3)° γ=90.00°
C23H43B2F8N2O3PRu
C23H43B2F8N2O3PRu
Dalton transactions (Cambridge, England : 2003) (2007) 1 107-113
a=12.5300(3)Å b=16.7150(4)Å c=29.1060(6)Å
α=90.0000(10)° β=90.0000(11)° γ=90.0000(11)°
C24H43ClP2Pt
C24H43ClP2Pt
Dalton transactions (Cambridge, England : 2003) (2007) 48 5692-5700
a=12.965(3)Å b=13.853(3)Å c=14.642(3)Å
α=90.00° β=90.00° γ=90.00°
C31H55F3O5P2PtS
C31H55F3O5P2PtS
Dalton transactions (Cambridge, England : 2003) (2007) 48 5692-5700
a=15.8240(2)Å b=11.37500(10)Å c=20.0930(2)Å
α=90.00° β=97.4580(8)° γ=90.00°
C21H35OP2Pt,0.5(C6H6),CF3O3S
C21H35OP2Pt,0.5(C6H6),CF3O3S
Dalton transactions (Cambridge, England : 2003) (2007) 48 5692-5700
a=13.430(3)Å b=15.667(3)Å c=15.472(3)Å
α=90.00° β=112.73(3)° γ=90.00°
C25H43OP2Pt,BF4
C25H43OP2Pt,BF4
Dalton transactions (Cambridge, England : 2003) (2007) 48 5692-5700
a=14.7910(2)Å b=26.9261(4)Å c=21.0591(4)Å
α=90.00° β=92.5884(6)° γ=90.00°
C26H47N2O3P2Rh
C26H47N2O3P2Rh
Dalton Transactions (2017)
a=8.6789(2)Å b=23.1826(5)Å c=14.3797(3)Å
α=90° β=94.098(2)° γ=90°
C24H46CoNP2,I
C24H46CoNP2,I
Chem.Commun. (2013) 49, 2771
a=8.2349(3)Å b=12.3743(4)Å c=14.5566(5)Å
α=73.304(2)° β=76.195(2)° γ=88.421(2)°
C24H46CoNP2,BF4
C24H46CoNP2,BF4
Chem.Commun. (2013) 49, 2771
a=8.3331(3)Å b=12.3139(5)Å c=14.4758(5)Å
α=73.052(2)° β=76.271(2)° γ=88.469(3)°
C20H37CoNP2
C20H37CoNP2
Chem.Commun. (2013) 49, 2771
a=11.08600(10)Å b=13.6610(3)Å c=28.9400(6)Å
α=90.00° β=95.6100(12)° γ=90.00°
C25H19BrMnN2O2P
C25H19BrMnN2O2P
ACS Catalysis (2018) 9, 1 479
a=12.9669(4)Å b=13.8740(4)Å c=12.3572(4)Å
α=90° β=93.057(3)° γ=90°
C32H26MnN2O3P
C32H26MnN2O3P
ACS Catalysis (2018) 9, 1 479
a=9.76630(10)Å b=16.9042(2)Å c=16.0896(2)Å
α=90° β=97.9510(10)° γ=90°
C21H39Cl2CoNP2
C21H39Cl2CoNP2
ACS Catalysis (2017) 7, 4 2500
a=8.2698(7)Å b=10.9458(9)Å c=14.8705(15)Å
α=98.190(6)° β=90.641(3)° γ=110.333(3)°
C21H39ClCoNP2
C21H39ClCoNP2
ACS Catalysis (2017) 7, 4 2500
a=14.2619(7)Å b=8.3444(4)Å c=19.9331(11)Å
α=90° β=96.477(3)° γ=90°
C33H46N3O2PRu
C33H46N3O2PRu
ACS Catalysis (2020) 5511-5515
a=19.023(4)Å b=8.5687(17)Å c=21.327(4)Å
α=90° β=113.37(3)° γ=90°
C39H27BrMnNO2P2,2(C4H8O)
C39H27BrMnNO2P2,2(C4H8O)
ACS catalysis (2018) 8, 9 7734-7741
a=12.0659(3)Å b=12.6901(2)Å c=13.3087(3)Å
α=94.2850(10)° β=102.738(2)° γ=90.704(2)°
C39H31BMnNO2P2
C39H31BMnNO2P2
ACS catalysis (2018) 8, 9 7734-7741
a=10.03790(10)Å b=11.36870(10)Å c=15.6568(2)Å
α=73.9700(10)° β=77.5420(10)° γ=72.8200(10)°
C21H36MnNO2P2
C21H36MnNO2P2
ACS catalysis (2018) 8, 9 8014-8019
a=18.6272(2)Å b=10.62300(10)Å c=23.1001(3)Å
α=90° β=101.1920(10)° γ=90°
C42H68Mn2N4O4P4
C42H68Mn2N4O4P4
ACS catalysis (2018) 8, 9 8014-8019
a=11.6109(2)Å b=18.5885(2)Å c=21.5322(3)Å
α=90° β=99.2180(10)° γ=90°
C21H29N2O3PRu
C21H29N2O3PRu
ACS Catalysis (2014) 4, 8 2649
a=8.6291(4)Å b=15.0143(6)Å c=16.9802(7)Å
α=88.131(2)° β=88.041(2)° γ=86.190(2)°
2(C35H45NO3P2Ru),C5H12
2(C35H45NO3P2Ru),C5H12
Journal of the American Chemical Society (2020)
a=25.7295(3)Å b=11.20140(10)Å c=25.9806(3)Å
α=90° β=109.3220(10)° γ=90°
C21H35BrMnN2O2P
C21H35BrMnN2O2P
Journal of the American Chemical Society (2017) 139, 34 11722-11725
a=12.6861(15)Å b=14.7681(18)Å c=13.3305(15)Å
α=90° β=108.111(5)° γ=90°
C21H34MnN2O2P
C21H34MnN2O2P
Journal of the American Chemical Society (2017) 139, 34 11722-11725
a=14.1304(15)Å b=14.4105(14)Å c=11.1726(12)Å
α=90° β=96.228(3)° γ=90°
C20H35Cl2NOP2Ru,2(CHCl3)
C20H35Cl2NOP2Ru,2(CHCl3)
Journal of the American Chemical Society (2018) 140, 23 7061-7064
a=12.0300(5)Å b=10.6729(4)Å c=25.4912(9)Å
α=90° β=97.6750(10)° γ=90°
C21H27N2O2PRu
C21H27N2O2PRu
Journal of the American Chemical Society (2018) 140, 23 7061-7064
a=8.8526(5)Å b=8.5443(4)Å c=27.4092(13)Å
α=90° β=96.433(5)° γ=90°
C21H27N2O2PRu
C21H27N2O2PRu
Journal of the American Chemical Society (2018) 140, 23 7061-7064
a=12.0886(6)Å b=13.2869(11)Å c=26.5089(13)Å
α=90° β=90° γ=90°
C20H27Cl2N2OPRu,CHCl3
C20H27Cl2N2OPRu,CHCl3
Journal of the American Chemical Society (2018) 140, 23 7061-7064
a=13.1954(7)Å b=15.1605(8)Å c=14.1886(7)Å
α=90° β=108.745(2)° γ=90°
C20H27Cl2N2OPRu
C20H27Cl2N2OPRu
Journal of the American Chemical Society (2018) 140, 23 7061-7064
a=7.9533(5)Å b=15.2254(9)Å c=17.5833(10)Å
α=90° β=94.4380(10)° γ=90°
C24H45NP2Zn
C24H45NP2Zn
Journal of the American Chemical Society (2020)
a=12.78470(10)Å b=15.04350(10)Å c=14.6470(2)Å
α=90° β=113.0550(10)° γ=90°
C23H43Cl2NP2Zn
C23H43Cl2NP2Zn
Journal of the American Chemical Society (2020)
a=15.2477(6)Å b=13.1523(4)Å c=15.7173(6)Å
α=90° β=117.078(5)° γ=90°
C29H60N2P2Si2Zn
C29H60N2P2Si2Zn
Journal of the American Chemical Society (2020)
a=20.4697(3)Å b=12.0184(2)Å c=14.2193(2)Å
α=90° β=92.9540(10)° γ=90°
C23H44IrNP2
C23H44IrNP2
Journal of the American Chemical Society (2016) 138, 20 6445-6454
a=11.527(2)Å b=11.527(2)Å c=9.5824(19)Å
α=90° β=90° γ=90°
C25H44IrNO4P2,C3H6O
C25H44IrNO4P2,C3H6O
Journal of the American Chemical Society (2016) 138, 20 6445-6454
a=12.2328(3)Å b=15.8577(4)Å c=16.0723(4)Å
α=90° β=90° γ=90°
C32H48MnNO3P2
C32H48MnNO3P2
Journal of the American Chemical Society (2016) 138, 13 4298-4301
a=8.6891(17)Å b=10.049(2)Å c=18.360(4)Å
α=91.73(3)° β=92.06(3)° γ=103.07(3)°
C25H44MnNO2P2
C25H44MnNO2P2
Journal of the American Chemical Society (2016) 138, 13 4298-4301
a=11.819(2)Å b=14.961(3)Å c=15.364(3)Å
α=90° β=90° γ=90°
C32H50MnNO3P2
C32H50MnNO3P2
Journal of the American Chemical Society (2016) 138, 13 4298-4301
a=13.1263(11)Å b=12.6361(10)Å c=19.5781(12)Å
α=90° β=100.158(3)° γ=90°
C25H42MnNO2P2
C25H42MnNO2P2
Journal of the American Chemical Society (2016) 138, 22 6985-6997
a=11.723(2)Å b=16.048(3)Å c=28.560(6)Å
α=90.00° β=90.00° γ=90.00°
C33H49MnN2O2P2,C4H8O
C33H49MnN2O2P2,C4H8O
Journal of the American Chemical Society (2016) 138, 22 6985-6997
a=11.956(2)Å b=12.902(3)Å c=13.400(3)Å
α=116.17(3)° β=91.63(2)° γ=98.83(3)°
C13H15BN2
C13H15BN2
Journal of the American Chemical Society (2016) 138, 40 13307-13313
a=22.7448(19)Å b=6.4330(5)Å c=16.2309(13)Å
α=90° β=105.714(5)° γ=90°
C20H19BN2O2
C20H19BN2O2
Journal of the American Chemical Society (2016) 138, 40 13307-13313
a=11.76794(9)Å b=11.36230(9)Å c=13.01027(9)Å
α=90° β=104.0256(8)° γ=90°
C29H41NO2P2Ru
C29H41NO2P2Ru
Journal of the American Chemical Society (2016) 138, 29 9077-9080
a=26.3890(6)Å b=26.3890(6)Å c=8.1302(2)Å
α=90° β=90° γ=90°
C24H44NO2P2Rh
C24H44NO2P2Rh
Journal of the American Chemical Society (2016) 138, 31 9941-9950
a=10.3758(3)Å b=13.2372(4)Å c=19.6596(5)Å
α=90° β=101.896(3)° γ=90°
C24H42NOP2Rh
C24H42NOP2Rh
Journal of the American Chemical Society (2016) 138, 31 9941-9950
a=11.417(2)Å b=29.009(5)Å c=15.317(3)Å
α=90° β=90° γ=90°
C30H48NOP2Rh
C30H48NOP2Rh
Journal of the American Chemical Society (2016) 138, 31 9941-9950
a=10.532(2)Å b=17.220(3)Å c=17.597(4)Å
α=93.68(3)° β=106.38(3)° γ=91.70(3)°
C30H50NO3P2RhS
C30H50NO3P2RhS
Journal of the American Chemical Society (2016) 138, 31 9941-9950
a=16.7779(11)Å b=16.3310(10)Å c=27.0224(15)Å
α=90° β=117.771(3)° γ=90°
C25H44IrNO4P2,3(CH2Cl2)
C25H44IrNO4P2,3(CH2Cl2)
Journal of the American Chemical Society (2016) 138, 20 6445-6454
a=16.6996(4)Å b=15.2679(3)Å c=16.3378(4)Å
α=90° β=116.667(3)° γ=90°
C36H47N7P3Rh
C36H47N7P3Rh
Organometallics (2009) 28, 2 523
a=16.7698(2)Å b=12.2296(3)Å c=18.4779(3)Å
α=90.00° β=112.2191(11)° γ=90.00°
C25H23N4OP2Rh
C25H23N4OP2Rh
Organometallics (2009) 28, 2 523
a=9.3850(19)Å b=10.736(2)Å c=12.812(3)Å
α=107.29(3)° β=106.06(3)° γ=99.08(3)°
2(c36H35N7P3Rh),0.5(C6H14)
2(c36H35N7P3Rh),0.5(C6H14)
Organometallics (2009) 28, 2 523
a=9.1795(2)Å b=17.938(4)Å c=22.503(5)Å
α=79.923(3)° β=78.612(1)° γ=82.986(1)°
C25H26I2N4P2Rh,C16H36N,C4H8O
C25H26I2N4P2Rh,C16H36N,C4H8O
Organometallics (2009) 28, 2 523
a=13.2256(2)Å b=15.7831(3)Å c=13.3389(2)Å
α=90.00° β=119.5274(7)° γ=90.00°
C26H47NOP2Rh,BF4
C26H47NOP2Rh,BF4
Organometallics (2009) 28, 6 1917
a=8.0280(16)Å b=8.4890(17)Å c=11.453(2)Å
α=79.77(3)° β=78.72(3)° γ=83.25(3)°
C27H47NO2P2Rh,BF4
C27H47NO2P2Rh,BF4
Organometallics (2009) 28, 6 1917
a=8.2140(16)Å b=22.253(5)Å c=8.3550(17)Å
α=90.00° β=93.05(3)° γ=90.00°
C26H47ClNOP2Rh
C26H47ClNOP2Rh
Organometallics (2009) 28, 6 1917
a=8.6274(2)Å b=23.1733(7)Å c=14.4164(4)Å
α=90.00° β=94.4112(18)° γ=90.00°
C25H43N3OP2Rh,0.5(C6H6),2(BF4)
C25H43N3OP2Rh,0.5(C6H6),2(BF4)
Organometallics (2009) 28, 6 1917
a=11.705(2)Å b=16.359(3)Å c=19.271(4)Å
α=90.00° β=98.26(3)° γ=90.00°
C27H49NOP2Rh,BF4
C27H49NOP2Rh,BF4
Organometallics (2009) 28, 6 1917
a=8.5787(2)Å b=12.6713(4)Å c=15.3075(5)Å
α=113.789(2)° β=97.889(2)° γ=92.405(2)°
C42H37N4O1.25PRu,C32H12BF24
C42H37N4O1.25PRu,C32H12BF24
Organometallics (2011) 30, 14 3826
a=11.5507(3)Å b=17.3308(5)Å c=19.5847(5)Å
α=113.3160(10)° β=93.0940(10)° γ=101.1520(10)°
C23H23N4,Cl
C23H23N4,Cl
Organometallics (2011) 30, 14 3826
a=8.8684(18)Å b=9.856(2)Å c=12.098(2)Å
α=92.53(3)° β=109.86(4)° γ=94.50(3)°
2(C24H22Cl2N4ORu),3(C4H8O)
2(C24H22Cl2N4ORu),3(C4H8O)
Organometallics (2011) 30, 14 3826
a=7.0433(14)Å b=10.613(2)Å c=20.980(4)Å
α=98.10(2)° β=94.93(3)° γ=103.49(3)°
C23H48BNP2Ru
C23H48BNP2Ru
Organometallics (2011) 30, 21 5716
a=12.541(2)Å b=15.314(3)Å c=15.131(3)Å
α=90.00° β=111.85(3)° γ=90.00°
C35H47INO2P3Ru
C35H47INO2P3Ru
Organometallics (2009) 28, 16 4791
a=10.5766(1)Å b=20.0712(2)Å c=16.7977(1)Å
α=90.00° β=90.053(1)° γ=90.00°
2(C28H46N2O7P2Ru2),C5H12
2(C28H46N2O7P2Ru2),C5H12
Organometallics (2009) 28, 16 4791
a=9.4286(4)Å b=14.0069(5)Å c=14.7373(5)Å
α=103.079(2)° β=99.442(2)° γ=107.519(2)°
C23H41NO5P2Ru
C23H41NO5P2Ru
Organometallics (2009) 28, 16 4791
a=14.7874(4)Å b=9.2745(3)Å c=19.7832(6)Å
α=90.00° β=95.006(2)° γ=90.00°
C35H47.89Cl0.11NO2P3Ru
C35H47.89Cl0.11NO2P3Ru
Organometallics (2009) 28, 16 4791
a=18.1513(12)Å b=19.3219(14)Å c=21.2787(17)Å
α=90.00° β=112.711(3)° γ=90.00°
C18H32ClNO3P2Ru
C18H32ClNO3P2Ru
Organometallics (2009) 28, 16 4791
a=16.303(3)Å b=15.896(3)Å c=18.185(4)Å
α=90.00° β=90.00° γ=90.00°
C22H41NO3P2Ru
C22H41NO3P2Ru
Organometallics (2009) 28, 16 4791
a=14.8727(6)Å b=13.0273(6)Å c=14.8764(6)Å
α=90.00° β=119.649(2)° γ=90.00°
C91H156ClN4O15P8Ru4,4(C23H39NO4P2Ru)
C91H156ClN4O15P8Ru4,4(C23H39NO4P2Ru)
Organometallics (2009) 28, 16 4791
a=13.2782(4)Å b=14.5962(5)Å c=26.5498(8)Å
α=90.00° β=90.076(2)° γ=90.00°
C25H46O2P2RhS2,BF4
C25H46O2P2RhS2,BF4
Organometallics (2012) 31, 1 505
a=8.8444(6)Å b=21.2018(14)Å c=17.7823(12)Å
α=90.00° β=101.268(2)° γ=90.00°
C24H42IrNOP2
C24H42IrNOP2
Organometallics (2010) 29, 17 3817
a=11.8998(3)Å b=15.5324(4)Å c=27.9034(7)Å
α=90.00° β=90.00° γ=90.00°
C26H50IrNOP2
C26H50IrNOP2
Organometallics (2010) 29, 17 3817
a=8.5056(3)Å b=20.0077(7)Å c=16.4676(6)Å
α=90.00° β=101.969(2)° γ=90.00°
C21H38IN2P2Rh
C21H38IN2P2Rh
Journal of the American Chemical Society (2008) 130, 14374-14375
a=14.0741(1)Å b=12.1989(1)Å c=15.3447(2)Å
α=90.00° β=112.5244(4)° γ=90.00°
C24H43N2P2Rh,H2O
C24H43N2P2Rh,H2O
Journal of the American Chemical Society (2008) 130, 14374-14375
a=12.2971(3)Å b=15.0942(3)Å c=14.9436(2)Å
α=90.00° β=100.3043(12)° γ=90.00°
3(C24H43N2P2Rh),C6H6,C3H3
3(C24H43N2P2Rh),C6H6,C3H3
Journal of the American Chemical Society (2008) 130, 14374-14375
a=17.1419(4)Å b=27.4558(8)Å c=19.2037(5)Å
α=90.00° β=90.00° γ=90.00°
C25H46N2P2Rh,CH4O,I
C25H46N2P2Rh,CH4O,I
Journal of the American Chemical Society (2008) 130, 14374-14375
a=16.8151(6)Å b=9.1697(3)Å c=19.8420(6)Å
α=90.00° β=94.0010(10)° γ=90.00°