Structures by: Agapie T.

Total: 241

C64H94N2Ni2O2P2

C64H94N2Ni2O2P2

Madalyn R. RadlauerAya K. BuckleyLawrence M. HenlingTheodor Agapie

Journal of the American Chemical Society (2013) 135, 3784-3787

a=13.408(2)Å   b=14.878(2)Å   c=23.068(4)Å

α=104.541(8)°   β=90.001(9)°   γ=116.551(8)°

C63H92N2Ni2O2P2,3.4(C7H8)

C63H92N2Ni2O2P2,3.4(C7H8)

Madalyn R. RadlauerAya K. BuckleyLawrence M. HenlingTheodor Agapie

Journal of the American Chemical Society (2013) 135, 3784-3787

a=13.284(4)Å   b=21.951(7)Å   c=27.971(9)Å

α=91.115(7)°   β=97.107(8)°   γ=101.877(7)°

C84H53F7Fe4N12O4,1(CH2Cl2),2(CF3O3S)

C84H53F7Fe4N12O4,1(CH2Cl2),2(CF3O3S)

de Ruiter, GrahamThompson, Niklas B.Takase, Michael K.Agapie, Theodor

Journal of the American Chemical Society (2016) 138, 5 1486-1489

a=22.4130(9)Å   b=16.4854(8)Å   c=24.6252(12)Å

α=90°   β=96.581(3)°   γ=90°

C192.99H160.09F12Fe8N29.4O24.67S4

C192.99H160.09F12Fe8N29.4O24.67S4

de Ruiter, GrahamThompson, Niklas B.Takase, Michael K.Agapie, Theodor

Journal of the American Chemical Society (2016) 138, 5 1486-1489

a=24.3192(13)Å   b=30.6264(16)Å   c=24.9005(14)Å

α=90°   β=95.8456(17)°   γ=90°

C84H54F5Fe4N12O5,2(CF3O3S),C4H10O,H2O,1.6(C2H3N)

C84H54F5Fe4N12O5,2(CF3O3S),C4H10O,H2O,1.6(C2H3N)

de Ruiter, GrahamThompson, Niklas B.Takase, Michael K.Agapie, Theodor

Journal of the American Chemical Society (2016) 138, 5 1486-1489

a=14.9873(4)Å   b=26.9656(7)Å   c=22.7659(6)Å

α=90°   β=100.818(2)°   γ=90°

C97.52H75.28F12Fe4N15.76O11S2

C97.52H75.28F12Fe4N15.76O11S2

de Ruiter, GrahamThompson, Niklas B.Takase, Michael K.Agapie, Theodor

Journal of the American Chemical Society (2016) 138, 5 1486-1489

a=22.6768(14)Å   b=17.6060(11)Å   c=24.2443(14)Å

α=90°   β=96.7988(18)°   γ=90°

C42H39CrO3

C42H39CrO3

Hirscher, Nathanael A.Perez Sierra, DannyAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 14 6022-6029

a=10.7286(4)Å   b=11.7519(4)Å   c=15.0753(5)Å

α=95.481(2)°   β=102.260(2)°   γ=115.318(2)°

C25H29CrO4.58

C25H29CrO4.58

Hirscher, Nathanael A.Perez Sierra, DannyAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 14 6022-6029

a=20.0935(10)Å   b=11.1921(6)Å   c=10.9889(5)Å

α=90°   β=116.859(2)°   γ=90°

0.5(C42H42Cr2O6)

0.5(C42H42Cr2O6)

Hirscher, Nathanael A.Perez Sierra, DannyAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 14 6022-6029

a=12.0150(16)Å   b=12.4851(16)Å   c=15.1703(19)Å

α=75.513(5)°   β=87.541(5)°   γ=80.203(5)°

C27H33CrO3

C27H33CrO3

Hirscher, Nathanael A.Perez Sierra, DannyAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 14 6022-6029

a=8.3974(4)Å   b=22.6187(10)Å   c=12.1007(5)Å

α=90°   β=92.754(2)°   γ=90°

C45H45CrO3

C45H45CrO3

Hirscher, Nathanael A.Perez Sierra, DannyAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 14 6022-6029

a=11.5802(10)Å   b=15.8845(12)Å   c=20.0281(17)Å

α=90°   β=103.123(3)°   γ=90°

C45H49CrNO2P2,C0.5HCl,C32H12BF24

C45H49CrNO2P2,C0.5HCl,C32H12BF24

Hirscher, Nathanael A.Perez Sierra, DannyAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 14 6022-6029

a=12.9268(7)Å   b=16.7595(10)Å   c=18.9950(9)Å

α=104.445(2)°   β=96.510(2)°   γ=107.746(2)°

C32H41ClMoOP2,0.5(C4H8O),0.25(C7H16O2)

C32H41ClMoOP2,0.5(C4H8O),0.25(C7H16O2)

Buss, Joshua A.Bailey, Gwendolyn A.Oppenheim, JuliusVanderVelde, David G.Goddard, 3rd, William AAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 39 15664-15674

a=12.469(6)Å   b=12.592(5)Å   c=23.363(11)Å

α=91.78(3)°   β=104.66(2)°   γ=102.92(3)°

C33H40MoO2P2,2(C6H6)

C33H40MoO2P2,2(C6H6)

Buss, Joshua A.Bailey, Gwendolyn A.Oppenheim, JuliusVanderVelde, David G.Goddard, 3rd, William AAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 39 15664-15674

a=11.665(8)Å   b=12.561(5)Å   c=13.985(6)Å

α=72.96(4)°   β=81.20(5)°   γ=88.33(4)°

C32H42MoOP2,0.5(C7H8)

C32H42MoOP2,0.5(C7H8)

Buss, Joshua A.Bailey, Gwendolyn A.Oppenheim, JuliusVanderVelde, David G.Goddard, 3rd, William AAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 39 15664-15674

a=23.82(2)Å   b=21.933(9)Å   c=13.402(5)Å

α=90°   β=116.50(2)°   γ=90°

C35H50MoOP2Si,C2H5

C35H50MoOP2Si,C2H5

Buss, Joshua A.Bailey, Gwendolyn A.Oppenheim, JuliusVanderVelde, David G.Goddard, 3rd, William AAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 39 15664-15674

a=11.6736(5)Å   b=12.0522(5)Å   c=14.3227(6)Å

α=94.987(2)°   β=105.434(2)°   γ=110.315(2)°

2(C32H41ClMoOP2),C5H12

2(C32H41ClMoOP2),C5H12

Buss, Joshua A.Bailey, Gwendolyn A.Oppenheim, JuliusVanderVelde, David G.Goddard, 3rd, William AAgapie, Theodor

Journal of the American Chemical Society (2019) 141, 39 15664-15674

a=13.1011(8)Å   b=13.0037(8)Å   c=19.0467(12)Å

α=90°   β=95.462(4)°   γ=90°

C78H75Fe4N15O5,CF3O3S,3(C4H8O)

C78H75Fe4N15O5,CF3O3S,3(C4H8O)

Reed, Christopher J.Agapie, Theodor

Journal of the American Chemical Society (2019) 141, 24 9479-9484

a=19.122(9)Å   b=18.204(5)Å   c=24.698(6)Å

α=90°   β=90°   γ=90°

C78H76Fe4N15O5,F6P,0.5(C4O),1.5(C2.5)

C78H76Fe4N15O5,F6P,0.5(C4O),1.5(C2.5)

Reed, Christopher J.Agapie, Theodor

Journal of the American Chemical Society (2019) 141, 24 9479-9484

a=11.9919(11)Å   b=13.7630(9)Å   c=25.905(2)Å

α=89.286(4)°   β=87.757(4)°   γ=79.589(4)°

C78H75Fe4N15O5,4(C3H3)

C78H75Fe4N15O5,4(C3H3)

Reed, Christopher J.Agapie, Theodor

Journal of the American Chemical Society (2019) 141, 24 9479-9484

a=12.3162(13)Å   b=15.5743(15)Å   c=21.6599(15)Å

α=102.370(6)°   β=94.445(4)°   γ=102.897(9)°

C78H76Fe4N15O5,2(CF3O3S)

C78H76Fe4N15O5,2(CF3O3S)

Reed, Christopher J.Agapie, Theodor

Journal of the American Chemical Society (2019) 141, 24 9479-9484

a=12.150(2)Å   b=14.975(5)Å   c=23.386(6)Å

α=95.271(14)°   β=90.124(12)°   γ=104.174(19)°

C78H76Fe4N15O5,2(C6H6)

C78H76Fe4N15O5,2(C6H6)

Reed, Christopher J.Agapie, Theodor

Journal of the American Chemical Society (2019) 141, 24 9479-9484

a=14.1115(11)Å   b=15.0509(11)Å   c=21.1556(16)Å

α=70.794(3)°   β=86.911(3)°   γ=70.570(3)°

C84H60Fe4N13O5,CF3O3S,1.5(C4H10O)

C84H60Fe4N13O5,CF3O3S,1.5(C4H10O)

de Ruiter, GrahamThompson, Niklas B.Lionetti, DavideAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 44 14094-14106

a=12.1605(7)Å   b=29.0785(17)Å   c=22.8070(13)Å

α=90°   β=98.2302(17)°   γ=90°

C84H60Fe4N12O4,BF4,2(C4H10O)

C84H60Fe4N12O4,BF4,2(C4H10O)

de Ruiter, GrahamThompson, Niklas B.Lionetti, DavideAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 44 14094-14106

a=40.1338(10)Å   b=17.6952(4)Å   c=25.3732(6)Å

α=90°   β=113.5582(13)°   γ=90°

C84H60Fe4N13O5,2(CF3O3S),C4H10O,CH2Cl2,H2O

C84H60Fe4N13O5,2(CF3O3S),C4H10O,CH2Cl2,H2O

de Ruiter, GrahamThompson, Niklas B.Lionetti, DavideAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 44 14094-14106

a=23.0449(10)Å   b=16.4976(6)Å   c=24.0586(10)Å

α=90°   β=96.5282(13)°   γ=90°

C84H60Fe4N12O4,0.89(CH2Cl2),3(CF3O3S),0.55(C4H10O)

C84H60Fe4N12O4,0.89(CH2Cl2),3(CF3O3S),0.55(C4H10O)

de Ruiter, GrahamThompson, Niklas B.Lionetti, DavideAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 44 14094-14106

a=15.4560(7)Å   b=15.4962(7)Å   c=19.2923(10)Å

α=99.6189(19)°   β=94.3724(19)°   γ=93.4051(18)°

C84H60Fe4N12O4,1.14(C4H10O),2(CF3O3S),2.86(C2H3N)

C84H60Fe4N12O4,1.14(C4H10O),2(CF3O3S),2.86(C2H3N)

de Ruiter, GrahamThompson, Niklas B.Lionetti, DavideAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 44 14094-14106

a=24.4372(11)Å   b=30.6281(15)Å   c=24.9731(12)Å

α=90°   β=95.4328(15)°   γ=90°

C84H60Fe4N13O5,0.65(CH2Cl2),3(CF3O3S),0.5(C4H10O),0.5(O)

C84H60Fe4N13O5,0.65(CH2Cl2),3(CF3O3S),0.5(C4H10O),0.5(O)

de Ruiter, GrahamThompson, Niklas B.Lionetti, DavideAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 44 14094-14106

a=17.9136(12)Å   b=20.5955(14)Å   c=26.4341(19)Å

α=76.679(2)°   β=72.463(2)°   γ=83.139(2)°

C33H40MoO3P2

C33H40MoO3P2

Buss, Joshua A.Edouard, Guy A.Cheng, ChristineShi, JadeAgapie, Theodor

Journal of the American Chemical Society (2014) 136, 32 11272-11275

a=12.9284(7)Å   b=12.6055(6)Å   c=19.2797(9)Å

α=90.00°   β=100.020(2)°   γ=90.00°

C30H40MoN2P2

C30H40MoN2P2

Buss, Joshua A.Edouard, Guy A.Cheng, ChristineShi, JadeAgapie, Theodor

Journal of the American Chemical Society (2014) 136, 32 11272-11275

a=8.9892(3)Å   b=23.8655(7)Å   c=12.7797(4)Å

α=90°   β=94.7145(16)°   γ=90°

C32H40MoO2P2,2(CF3O3S)

C32H40MoO2P2,2(CF3O3S)

Buss, Joshua A.Edouard, Guy A.Cheng, ChristineShi, JadeAgapie, Theodor

Journal of the American Chemical Society (2014) 136, 32 11272-11275

a=12.7866(6)Å   b=16.4447(7)Å   c=17.5292(7)Å

α=90°   β=91.785(2)°   γ=90°

C32H44MoNP2,C24H20B

C32H44MoNP2,C24H20B

Buss, Joshua A.Edouard, Guy A.Cheng, ChristineShi, JadeAgapie, Theodor

Journal of the American Chemical Society (2014) 136, 32 11272-11275

a=12.7883(6)Å   b=16.1757(7)Å   c=23.2443(10)Å

α=90°   β=101.250(2)°   γ=90°

C34H46MoN2P2,2(CF3O3S),0.33(C2H3N)

C34H46MoN2P2,2(CF3O3S),0.33(C2H3N)

Buss, Joshua A.Edouard, Guy A.Cheng, ChristineShi, JadeAgapie, Theodor

Journal of the American Chemical Society (2014) 136, 32 11272-11275

a=32.0444(10)Å   b=32.0444(10)Å   c=21.1665(9)Å

α=90°   β=90°   γ=120°

C30H43MoP2,C24H20B,C4H8O

C30H43MoP2,C24H20B,C4H8O

Buss, Joshua A.Edouard, Guy A.Cheng, ChristineShi, JadeAgapie, Theodor

Journal of the American Chemical Society (2014) 136, 32 11272-11275

a=11.1314(5)Å   b=17.1403(8)Å   c=26.9594(12)Å

α=90°   β=94.544(2)°   γ=90°

2(C33H40MoO5P2),4.5(C6H6)

2(C33H40MoO5P2),4.5(C6H6)

Henthorn, Justin T.Lin, SiboAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 4 1458-1464

a=11.9691(7)Å   b=16.9351(10)Å   c=22.8410(13)Å

α=106.621(3)°   β=91.522(3)°   γ=109.707(3)°

C35H44MoO5P2Si,C2H3N

C35H44MoO5P2Si,C2H3N

Henthorn, Justin T.Lin, SiboAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 4 1458-1464

a=11.4020(4)Å   b=17.1733(7)Å   c=19.0484(7)Å

α=90.00°   β=102.3990(10)°   γ=90.00°

C82H89CaF9Fe3N7O24S3

C82H89CaF9Fe3N7O24S3

David E. HerbertDavide LionettiJonathan RittleTheodor Agapie

Journal of the American Chemical Society (2013) 135, 19075-19078

a=15.0308(6)Å   b=25.1917(10)Å   c=23.7066(10)Å

α=90.00°   β=103.928(2)°   γ=90.00°

C66H56F3Fe3LaN6O14S,0.39(CH2Cl2),1.61(C4H10O),2(CF3O3S),C4H10O2

C66H56F3Fe3LaN6O14S,0.39(CH2Cl2),1.61(C4H10O),2(CF3O3S),C4H10O2

David E. HerbertDavide LionettiJonathan RittleTheodor Agapie

Journal of the American Chemical Society (2013) 135, 19075-19078

a=14.949(5)Å   b=25.335(8)Å   c=23.827(8)Å

α=90°   β=102.574(8)°   γ=90°

C66H56F3Fe3N6O14SSc,CH2Cl2,2(CF3O3S),C4H10O2,C4H9O

C66H56F3Fe3N6O14SSc,CH2Cl2,2(CF3O3S),C4H10O2,C4H9O

David E. HerbertDavide LionettiJonathan RittleTheodor Agapie

Journal of the American Chemical Society (2013) 135, 19075-19078

a=14.5972(18)Å   b=25.161(3)Å   c=23.470(3)Å

α=90°   β=102.693(7)°   γ=90°

C68H56F9Fe3N6O20S3Sr

C68H56F9Fe3N6O20S3Sr

David E. HerbertDavide LionettiJonathan RittleTheodor Agapie

Journal of the American Chemical Society (2013) 135, 19075-19078

a=16.2788(6)Å   b=26.1544(9)Å   c=20.0612(7)Å

α=90.00°   β=105.979(2)°   γ=90.00°

C66H49F9Fe3N7O18S3Zn

C66H49F9Fe3N7O18S3Zn

David E. HerbertDavide LionettiJonathan RittleTheodor Agapie

Journal of the American Chemical Society (2013) 135, 19075-19078

a=14.292(3)Å   b=14.592(3)Å   c=18.666(4)Å

α=72.48(3)°   β=72.06(3)°   γ=70.67(3)°

C66H56CaF3Fe3N6O14S,CF3O3S,C4H10O2,1.56(C4H10O)

C66H56CaF3Fe3N6O14S,CF3O3S,C4H10O2,1.56(C4H10O)

David E. HerbertDavide LionettiJonathan RittleTheodor Agapie

Journal of the American Chemical Society (2013) 135, 19075-19078

a=11.8543(18)Å   b=26.583(4)Å   c=25.731(4)Å

α=90°   β=93.023(8)°   γ=90°

C72H69GdMn3N11O12,CF3O3S,O,C4H10O

C72H69GdMn3N11O12,CF3O3S,O,C4H10O

Kanady, Jacob S.Lin, Po-HengCarsch, Kurtis M.Nielsen, Robert J.Takase, Michael K.Goddard, 3rd, William AAgapie, Theodor

Journal of the American Chemical Society (2014) 136, 41 14373

a=14.8835(10)Å   b=16.1532(11)Å   c=16.7758(11)Å

α=88.985(3)°   β=89.785(3)°   γ=69.483(3)°

C69H62CaMn3N10O11,CF3O3S,3.62(C6H6),0.55(C4H10O),O

C69H62CaMn3N10O11,CF3O3S,3.62(C6H6),0.55(C4H10O),O

Kanady, Jacob S.Lin, Po-HengCarsch, Kurtis M.Nielsen, Robert J.Takase, Michael K.Goddard, 3rd, William AAgapie, Theodor

Journal of the American Chemical Society (2014) 136, 41 14373

a=13.9463(15)Å   b=16.9456(18)Å   c=21.456(2)Å

α=101.260(3)°   β=102.405(3)°   γ=102.535(3)°

C74H71AgCaCl3.5F3Mn3N10O14.5S

C74H71AgCaCl3.5F3Mn3N10O14.5S

Kanady, Jacob S.Lin, Po-HengCarsch, Kurtis M.Nielsen, Robert J.Takase, Michael K.Goddard, 3rd, William AAgapie, Theodor

Journal of the American Chemical Society (2014) 136, 41 14373

a=31.574(4)Å   b=17.923(2)Å   c=32.134(6)Å

α=90°   β=119.365(3)°   γ=90°

C37H48OP2Pd2,2(BF4)

C37H48OP2Pd2,2(BF4)

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=18.020(4)Å   b=15.340(3)Å   c=13.560(3)Å

α=90.00°   β=90.00°   γ=90.00°

C37H48B2F8P2Pd2

C37H48B2F8P2Pd2

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=13.1190(6)Å   b=15.2041(7)Å   c=18.3188(9)Å

α=90.00°   β=90.00°   γ=90.00°

C34H42B2F8P2Pd2

C34H42B2F8P2Pd2

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=15.2809(8)Å   b=12.8833(6)Å   c=18.3268(9)Å

α=90.00°   β=90.062(3)°   γ=90.00°

C36H48B2F8P2Pd2

C36H48B2F8P2Pd2

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=11.8911(5)Å   b=13.5564(6)Å   c=23.4012(11)Å

α=90.00°   β=100.514(2)°   γ=90.00°

C34H44P2Pd2S,2(BF4)

C34H44P2Pd2S,2(BF4)

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=19.2900(11)Å   b=16.1824(9)Å   c=23.3891(13)Å

α=90.00°   β=90.00°   γ=90.00°

C35H46B2F8P2Pd2S

C35H46B2F8P2Pd2S

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=17.950(4)Å   b=15.271(3)Å   c=13.363(3)Å

α=90.00°   β=90.00°   γ=90.00°

C35H46B2F8P2Pd2S

C35H46B2F8P2Pd2S

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=18.338(4)Å   b=15.222(3)Å   c=13.065(3)Å

α=90.00°   β=90.00°   γ=90.00°

C35H46B2F8OP2Pd2

C35H46B2F8OP2Pd2

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=11.880(2)Å   b=19.070(4)Å   c=16.440(3)Å

α=90.00(3)°   β=98.53(3)°   γ=90.00(3)°

C38H46P2Pd2S,2(BF4),CH3NO2

C38H46P2Pd2S,2(BF4),CH3NO2

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=9.9974(4)Å   b=14.9331(6)Å   c=28.0415(11)Å

α=90°   β=94.887(2)°   γ=90°

C44H52B2F8P2Pd2S

C44H52B2F8P2Pd2S

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=19.3947(11)Å   b=11.1339(6)Å   c=20.5887(12)Å

α=90°   β=103.026(2)°   γ=90°

C38H47B2F8NP2Pd2

C38H47B2F8NP2Pd2

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=31.050(6)Å   b=15.190(3)Å   c=20.770(4)Å

α=90.00°   β=121.85(3)°   γ=90.00°

C33H45P2Pd2,BF4

C33H45P2Pd2,BF4

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=8.6364(3)Å   b=15.3772(6)Å   c=25.2392(10)Å

α=90.00°   β=91.591(2)°   γ=90.00°

C34H45BF4N2P2Pd2

C34H45BF4N2P2Pd2

Sibo LinDavid E. HerbertAlexandra VelianMichael W. DayTheodor Agapie

Journal of the American Chemical Society (2013) 135, 15830-15840

a=14.6826(6)Å   b=13.1786(5)Å   c=17.8342(7)Å

α=90.00°   β=94.303(2)°   γ=90.00°

(mu)-nitrido tris-thioadamantyl tris-(N-tert-butyl anilido) dimolybdenum(IV, V)

C40H58Mo1.33N2.67S2

Theodor AgapieAaron L. OdomChristopher C. Cummins

Inorganic Chemistry (2000) 39, 174-179

a=15.677(3)Å   b=15.677(3)Å   c=16.021(2)Å

α=90.00°   β=90.00°   γ=120.00°

C55H78Fe2N4P6

C55H78Fe2N4P6

Arnett, Charles H.Agapie, Theodor

Journal of the American Chemical Society (2020)

a=18.123(3)Å   b=17.599(3)Å   c=18.209(2)Å

α=90°   β=108.130(10)°   γ=90°

C84H63Fe3N12O4,3(CF3O3S),0.5(C1H2Cl2)

C84H63Fe3N12O4,3(CF3O3S),0.5(C1H2Cl2)

Arnett, Charles H.Chalkley, Matthew J.Agapie, Theodor

Journal of the American Chemical Society (2018) 140, 16 5569-5578

a=23.4333(11)Å   b=23.4333(11)Å   c=9.7960(5)Å

α=90°   β=90°   γ=120°

C84H60Fe4N12O4,CF3O3S,2.67(C2N)

C84H60Fe4N12O4,CF3O3S,2.67(C2N)

Arnett, Charles H.Chalkley, Matthew J.Agapie, Theodor

Journal of the American Chemical Society (2018) 140, 16 5569-5578

a=40.403(4)Å   b=17.5931(17)Å   c=25.468(3)Å

α=90°   β=115.389(6)°   γ=90°

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°

C84H59Fe4N12O5,2(CH2Cl2),CF3O3S,2(C4H10O)

C84H59Fe4N12O5,2(CH2Cl2),CF3O3S,2(C4H10O)

de Ruiter, GrahamThompson, Niklas B.Takase, Michael K.Agapie, Theodor

Journal of the American Chemical Society (2016) 138, 5 1486-1489

a=17.2200(5)Å   b=26.3779(9)Å   c=19.6922(6)Å

α=90°   β=99.7240(10)°   γ=90°

2(C35H44MoO5P2),B2C36F30O2,2(CH2Cl2)

2(C35H44MoO5P2),B2C36F30O2,2(CH2Cl2)

Henthorn, Justin T.Lin, SiboAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 4 1458-1464

a=12.5114(11)Å   b=15.1452(14)Å   c=15.6129(14)Å

α=64.704(3)°   β=81.599(3)°   γ=85.342(3)°

C32H38MoO4P2

C32H38MoO4P2

Henthorn, Justin T.Lin, SiboAgapie, Theodor

Journal of the American Chemical Society (2015) 137, 4 1458-1464

a=11.6649(6)Å   b=16.1870(8)Å   c=16.4201(8)Å

α=90.00°   β=108.193(3)°   γ=90.00°

C80H88Cl4N2O6Zr2,3(C7H8),C6H6

C80H88Cl4N2O6Zr2,3(C7H8),C6H6

Radlauer, Madalyn R.Agapie, Theodor

Organometallics (2014) 33, 13 3247-3250

a=16.9447(8)Å   b=19.0668(10)Å   c=29.5530(17)Å

α=90°   β=90°   γ=90°

C39H47Cl2NO3Zr

C39H47Cl2NO3Zr

Radlauer, Madalyn R.Agapie, Theodor

Organometallics (2014) 33, 13 3247-3250

a=10.100(2)Å   b=21.150(4)Å   c=17.180(3)Å

α=90°   β=101.11(3)°   γ=90°

C84H100N2O6Zr2

C84H100N2O6Zr2

Radlauer, Madalyn R.Agapie, Theodor

Organometallics (2014) 33, 13 3247-3250

a=9.6061(4)Å   b=29.2804(13)Å   c=17.7516(8)Å

α=90°   β=105.5095(17)°   γ=90°

C82H94Cl4N4O4Zr2,4(C7H8),C5H12

C82H94Cl4N4O4Zr2,4(C7H8),C5H12

Radlauer, Madalyn R.Agapie, Theodor

Organometallics (2014) 33, 13 3247-3250

a=15.1035(15)Å   b=25.847(3)Å   c=26.584(3)Å

α=90°   β=90°   γ=90°

C61H87NNi3O4P3

C61H87NNi3O4P3

Suseno, SandyHorak, Kyle T.Day, Michael W.Agapie, Theodor

Organometallics (2013) 32, 23 6883-6886

a=18.977(8)Å   b=13.886(5)Å   c=24.819(12)Å

α=90.00°   β=107.965(13)°   γ=90.00°

C57H86I2Ni3P3

C57H86I2Ni3P3

Suseno, SandyHorak, Kyle T.Day, Michael W.Agapie, Theodor

Organometallics (2013) 32, 23 6883-6886

a=13.2841(6)Å   b=31.8372(15)Å   c=14.5613(7)Å

α=90.00°   β=109.132(2)°   γ=90.00°

C34H40Ni3O4P2

C34H40Ni3O4P2

Suseno, SandyHorak, Kyle T.Day, Michael W.Agapie, Theodor

Organometallics (2013) 32, 23 6883-6886

a=13.2747(6)Å   b=14.3889(6)Å   c=17.0160(7)Å

α=90°   β=90°   γ=90°

C152.43H215.1F6I2Ni4O6P6S2

C152.43H215.1F6I2Ni4O6P6S2

Suseno, SandyHorak, Kyle T.Day, Michael W.Agapie, Theodor

Organometallics (2013) 32, 23 6883-6886

a=15.7297(7)Å   b=19.8722(7)Å   c=25.1292(11)Å

α=90.00°   β=102.033(3)°   γ=90.00°

C30H42N2NiOP2,2(BF4),C2H3N

C30H42N2NiOP2,2(BF4),C2H3N

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=11.4094(4)Å   b=11.4298(4)Å   c=30.3230(12)Å

α=92.4620(10)°   β=100.545(2)°   γ=107.826(2)°

C30H39NNiOP2

C30H39NNiOP2

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=11.5436(5)Å   b=15.7065(6)Å   c=15.3374(5)Å

α=90°   β=90.135(2)°   γ=90°

C47H39BF15NNiP2,C3.12

C47H39BF15NNiP2,C3.12

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=40.5679(17)Å   b=12.1876(4)Å   c=20.6773(7)Å

α=90°   β=114.405(2)°   γ=90°

C30H40NNiOP2,CF3O3S

C30H40NNiOP2,CF3O3S

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=12.7394(14)Å   b=15.2760(17)Å   c=16.7217(19)Å

α=90°   β=101.186(2)°   γ=90°

C58H78N2Ni2P4,C5H12

C58H78N2Ni2P4,C5H12

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=18.7148(7)Å   b=13.0646(5)Å   c=25.9359(9)Å

α=90°   β=109.324(2)°   γ=90°

C29H40NP2Pd,CF3O3S

C29H40NP2Pd,CF3O3S

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=12.2515(8)Å   b=11.1901(7)Å   c=24.2291(15)Å

α=90°   β=102.437(3)°   γ=90°

C29H39NP2Pd

C29H39NP2Pd

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=8.6112(7)Å   b=17.8635(16)Å   c=8.8154(11)Å

α=90°   β=99.464(4)°   γ=90°

C58H79N2Ni2P4,CF3O3S,C6H6

C58H79N2Ni2P4,CF3O3S,C6H6

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=20.003(3)Å   b=13.924(2)Å   c=22.832(4)Å

α=90°   β=99.777(4)°   γ=90°

C47H39BF15NP2Pd

C47H39BF15NP2Pd

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=13.4502(7)Å   b=14.6571(7)Å   c=22.5392(11)Å

α=90°   β=91.080(2)°   γ=90°

C42H61BF3NNiO3P2S

C42H61BF3NNiO3P2S

Horak, Kyle T.VanderVelde, David G.Agapie, Theodor

Organometallics (2015) 34, 19 4753

a=15.7224(11)Å   b=12.6201(9)Å   c=22.1023(15)Å

α=90°   β=108.003(2)°   γ=90°

C31.82H29.47AlCl2.18NP2

C31.82H29.47AlCl2.18NP2

Lifschitz, Alejo M.Hirscher, Nathanael A.Lee, Heui BeomBuss, Joshua A.Agapie, Theodor

Organometallics (2017) 36, 8 1640

a=11.6158(8)Å   b=11.8725(10)Å   c=12.0068(11)Å

α=94.734(5)°   β=100.951(5)°   γ=110.634(5)°

C31H27Cl3CrNP2,2(CH2Cl2)

C31H27Cl3CrNP2,2(CH2Cl2)

Lifschitz, Alejo M.Hirscher, Nathanael A.Lee, Heui BeomBuss, Joshua A.Agapie, Theodor

Organometallics (2017) 36, 8 1640

a=10.8962(7)Å   b=12.8113(15)Å   c=13.8238(17)Å

α=75.733(6)°   β=81.438(5)°   γ=73.265(5)°

C30H36Al2Cl3NP2

C30H36Al2Cl3NP2

Lifschitz, Alejo M.Hirscher, Nathanael A.Lee, Heui BeomBuss, Joshua A.Agapie, Theodor

Organometallics (2017) 36, 8 1640

a=10.5133(4)Å   b=12.7230(5)Å   c=13.7659(6)Å

α=64.1950(10)°   β=80.7120(10)°   γ=80.8120(10)°

AlCl4,C27H28NP2

AlCl4,C27H28NP2

Lifschitz, Alejo M.Hirscher, Nathanael A.Lee, Heui BeomBuss, Joshua A.Agapie, Theodor

Organometallics (2017) 36, 8 1640

a=10.2494(5)Å   b=15.7035(8)Å   c=17.8108(10)Å

α=90°   β=90°   γ=90°

C24H20AlCl3OP2,C6H6

C24H20AlCl3OP2,C6H6

Lifschitz, Alejo M.Hirscher, Nathanael A.Lee, Heui BeomBuss, Joshua A.Agapie, Theodor

Organometallics (2017) 36, 8 1640

a=9.3545(11)Å   b=9.3024(11)Å   c=17.270(2)Å

α=90°   β=101.913(3)°   γ=90°

0.5(C54H54Cl6Cr2N2P4),3(CH2Cl2)

0.5(C54H54Cl6Cr2N2P4),3(CH2Cl2)

Lifschitz, Alejo M.Hirscher, Nathanael A.Lee, Heui BeomBuss, Joshua A.Agapie, Theodor

Organometallics (2017) 36, 8 1640

a=13.5833(11)Å   b=14.3977(14)Å   c=20.235(2)Å

α=94.594(5)°   β=92.147(5)°   γ=109.222(4)°

C64H60Cl3Cr2N2P4,0.5(C0.77H2.3AlCl3.23),0.5(C0.69H2.06AlCl3.31),2(C7H8)

C64H60Cl3Cr2N2P4,0.5(C0.77H2.3AlCl3.23),0.5(C0.69H2.06AlCl3.31),2(C7H8)

Lifschitz, Alejo M.Hirscher, Nathanael A.Lee, Heui BeomBuss, Joshua A.Agapie, Theodor

Organometallics (2017) 36, 8 1640

a=14.6582(5)Å   b=22.7883(8)Å   c=24.5404(9)Å

α=68.6350(10)°   β=88.7120(10)°   γ=88.3820(10)°

C45H62NiP3,CF3O3S,C4H8O

C45H62NiP3,CF3O3S,C4H8O

Suseno, SandyAgapie, Theodor

Organometallics (2013) 32, 11 3161

a=30.909(6)Å   b=9.6130(14)Å   c=33.956(6)Å

α=90.00°   β=105.396(6)°   γ=90.00°

C36H50N2P2Pd,2(BF4),C2H3N

C36H50N2P2Pd,2(BF4),C2H3N

Suseno, SandyAgapie, Theodor

Organometallics (2013) 32, 11 3161

a=13.0651(7)Å   b=19.8103(8)Å   c=15.9572(8)Å

α=90.00°   β=98.120(2)°   γ=90.00°

C45H62P3Pd,BF4,C6H6

C45H62P3Pd,BF4,C6H6

Suseno, SandyAgapie, Theodor

Organometallics (2013) 32, 11 3161

a=9.7632(6)Å   b=13.8627(9)Å   c=18.8685(11)Å

α=111.116(3)°   β=96.691(3)°   γ=92.975(3)°

2(C57H87NiP3),4(CF3O3S),C6H6,C4H8O

2(C57H87NiP3),4(CF3O3S),C6H6,C4H8O

Suseno, SandyAgapie, Theodor

Organometallics (2013) 32, 11 3161

a=15.2622(7)Å   b=20.3413(9)Å   c=23.5270(10)Å

α=90.00°   β=103.125(2)°   γ=90.00°

C30H33Cl2CrI3NO4P2

C30H33Cl2CrI3NO4P2

Agapie, TheodorDay, Michael W.Henling, Lawrence M.Labinger, Jay A.Bercaw, John E.

Organometallics (2006) 25, 11 2733

a=13.5277(3)Å   b=13.5151(3)Å   c=20.3801(5)Å

α=90.00°   β=107.8920(10)°   γ=90.00°

C17H20Fe0.5O2PPd

C17H20Fe0.5O2PPd

Horak, Kyle T.Lin, SiboRittle, JonathanAgapie, Theodor

Organometallics (2015) 34, 18 4429

a=11.4622(6)Å   b=13.3606(7)Å   c=11.1153(5)Å

α=90°   β=90°   γ=90°

C34H40CoO4P2Pd2,BF4,0.5(C6H6),1.5(C2H3N)

C34H40CoO4P2Pd2,BF4,0.5(C6H6),1.5(C2H3N)

Horak, Kyle T.Lin, SiboRittle, JonathanAgapie, Theodor

Organometallics (2015) 34, 18 4429

a=15.9326(8)Å   b=16.5136(9)Å   c=18.4384(10)Å

α=90.490(3)°   β=114.618(2)°   γ=105.162(2)°

C36H44Fe1O6P2Pd2

C36H44Fe1O6P2Pd2

Horak, Kyle T.Lin, SiboRittle, JonathanAgapie, Theodor

Organometallics (2015) 34, 18 4429

a=14.0587(5)Å   b=14.2422(5)Å   c=18.4208(6)Å

α=90°   β=90°   γ=90°

C34H40CoO4P2Pd2

C34H40CoO4P2Pd2

Horak, Kyle T.Lin, SiboRittle, JonathanAgapie, Theodor

Organometallics (2015) 34, 18 4429

a=15.7355(5)Å   b=13.6086(4)Å   c=15.8392(5)Å

α=90°   β=90.1244(15)°   γ=90°