Structures by: White P. S.

Total: 220

Mg0.50Cl2FeC46.67H84.50N6O26.50

Mg0.50Cl2FeC46.67H84.50N6O26.50

Suraj DhunganaPeter S. WhiteAlvin L. Crumbliss

Journal of the American Chemical Society (2003) 125, 14760-14767

a=20.1473(13)Å   b=21.5778(15)Å   c=14.8013(10)Å

α=90.0°   β=94.586(2)°   γ=90.0°

C25H36BN7OPt

C25H36BN7OPt

Bryan E. FrauhigerMatthew T. OndiscoPeter S. WhiteJoseph L. Templeton

Journal of the American Chemical Society (2012) 134, 8902-8910

a=8.1004(3)Å   b=9.5201(3)Å   c=18.1022(7)Å

α=78.606(2)°   β=77.336(3)°   γ=77.100(2)°

4054-s12

C88H79Cl3N16O13

Mee-Kyung ChungPeter S. WhiteStephen J. LeeMarcey L. WatersMichel R. Gagné

Journal of the American Chemical Society (2012) 134, 11415-11429

a=22.4604(6)Å   b=25.1013(6)Å   c=35.8922(10)Å

α=90.00°   β=90.00°   γ=90.00°

2(C75H79FN16O12),4(O),8(C5H5N)

2(C75H79FN16O12),4(O),8(C5H5N)

Mee-Kyung ChungPeter S. WhiteStephen J. LeeMarcey L. WatersMichel R. Gagné

Journal of the American Chemical Society (2012) 134, 11415-11429

a=19.2050(4)Å   b=23.3121(5)Å   c=20.2621(4)Å

α=90.00°   β=90.498(2)°   γ=90.00°

0.5(C340H372F4N64O48)

0.5(C340H372F4N64O48)

Mee-Kyung ChungPeter S. WhiteStephen J. LeeMarcey L. WatersMichel R. Gagné

Journal of the American Chemical Society (2012) 134, 11415-11429

a=26.5692(8)Å   b=18.3016(6)Å   c=20.3207(5)Å

α=90.00°   β=90.00°   γ=90.00°

C85H93FN16O12,C90H90F2N16O12,CH4O,CHCl3

C85H93FN16O12,C90H90F2N16O12,CH4O,CHCl3

Mee-Kyung ChungPeter S. WhiteStephen J. LeeMarcey L. WatersMichel R. Gagné

Journal of the American Chemical Society (2012) 134, 11415-11429

a=47.4778(13)Å   b=47.4778(13)Å   c=17.0113(6)Å

α=90.00°   β=90.00°   γ=120.00°

PtC57H52B2F24N6O

PtC57H52B2F24N6O

Stefan ReinartzPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Journal of the American Chemical Society (2001) 123, 12724-12725

a=39.7863(20)Å   b=12.6041(6)Å   c=25.4511(13)Å

α=90.0°   β=107.363(1)°   γ=90.0°

C47H41BCl2F24PRh

C47H41BCl2F24PRh

Felicia L. TawHeather MellowsPeter S. WhiteFrederick J. HollanderRobert G. BergmanMaurice BrookhartD. Michael Heinekey

Journal of the American Chemical Society (2002) 124, 5100-5108

a=12.1814(2)Å   b=19.1970(4)Å   c=24.7379(5)Å

α=90°   β=100.841(1)°   γ=90°

Rh2P2C58H60BF24

Rh2P2C58H60BF24

Felicia L. TawHeather MellowsPeter S. WhiteFrederick J. HollanderRobert G. BergmanMaurice BrookhartD. Michael Heinekey

Journal of the American Chemical Society (2002) 124, 5100-5108

a=12.6439(4)Å   b=13.4981(4)Å   c=18.8481(5)Å

α=90.833(1)°   β=95.243(1)°   γ=90.721(1)°

C27H33PtBN6

C27H33PtBN6

Michael P. JensenDouglas D. WickStefan ReinartzPeter S. WhiteJoseph L. TempletonKaren I. Goldberg

Journal of the American Chemical Society (2003) 125, 8614-8624

a=14.8233(7)Å   b=10.7330(5)Å   c=18.2072(8)Å

α=90.0°   β=112.067(1)°   γ=90.0°

PtC61H66B2N6F24SiO2

PtC61H66B2N6F24SiO2

Stefan ReinartzPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Journal of the American Chemical Society (2001) 123, 6425-6426

a=12.4242(5)Å   b=22.4768(8)Å   c=25.1848(9)Å

α=90.0°   β=95.457(1)°   γ=90.0°

C15H8Fe3N2O9P2

C15H8Fe3N2O9P2

Caryn C. Borg-BreenMaria T. BautistaCynthia K. SchauerPeter S. White

Journal of the American Chemical Society (2000) 122, 3952-3962

a=11.7382(5)Å   b=9.7384(4)Å   c=18.6132(8)Å

α=90.0°   β=99.906(1)°   γ=90.0°

C45H30Au2Fe3O9P4S2

C45H30Au2Fe3O9P4S2

Caryn C. Borg-BreenMaria T. BautistaCynthia K. SchauerPeter S. White

Journal of the American Chemical Society (2000) 122, 3952-3962

a=16.8779(7)Å   b=14.4419(6)Å   c=21.1256(9)Å

α=90.0°   β=107.633(1)°   γ=90.0°

2(C20H45N2P2Ru0.94),2(BF4),C4H8O,0.12(Ru)

2(C20H45N2P2Ru0.94),2(BF4),C4H8O,0.12(Ru)

Lindley, Brian M.Bruch, Quinton J.White, Peter S.Hasanayn, FarajMiller, Alexander J. M.

Journal of the American Chemical Society (2017) 139, 15 5305-5308

a=28.0407(4)Å   b=14.5457(2)Å   c=14.2999(2)Å

α=90°   β=96.8021(9)°   γ=90°

C28H53N2O3P2Ru,BF4

C28H53N2O3P2Ru,BF4

Lindley, Brian M.Bruch, Quinton J.White, Peter S.Hasanayn, FarajMiller, Alexander J. M.

Journal of the American Chemical Society (2017) 139, 15 5305-5308

a=9.2072(2)Å   b=13.6297(3)Å   c=16.4432(3)Å

α=113.1776(13)°   β=100.0148(15)°   γ=92.8470(15)°

C16H21NO4

C16H21NO4

Bartlett, Samuel L.Sohtome, YoshihiroHashizume, DaisukeWhite, Peter S.Sawamura, MikiJohnson, Jeffrey S.Sodeoka, Mikiko

Journal of the American Chemical Society (2017) 139, 25 8661-8666

a=6.0729(3)Å   b=8.3117(5)Å   c=30.5846(17)Å

α=90°   β=90°   γ=90°

C20H27NO6

C20H27NO6

Bartlett, Samuel L.Sohtome, YoshihiroHashizume, DaisukeWhite, Peter S.Sawamura, MikiJohnson, Jeffrey S.Sodeoka, Mikiko

Journal of the American Chemical Society (2017) 139, 25 8661-8666

a=10.67160(19)Å   b=11.1383(2)Å   c=34.5954(6)Å

α=90°   β=90°   γ=90°

C21H23ClIrNO

C21H23ClIrNO

Turlington, Christopher R.White, Peter S.Brookhart, MauriceTempleton, Joseph L.

Journal of the American Chemical Society (2014) 136, 10 3981-3994

a=7.22210(10)Å   b=14.9351(2)Å   c=17.0443(2)Å

α=90.00°   β=93.7670(10)°   γ=90.00°

C21H23ClIrNO2,2(CH2Cl2)

C21H23ClIrNO2,2(CH2Cl2)

Turlington, Christopher R.White, Peter S.Brookhart, MauriceTempleton, Joseph L.

Journal of the American Chemical Society (2014) 136, 10 3981-3994

a=9.1491(4)Å   b=10.4209(4)Å   c=14.3917(6)Å

α=75.867(2)°   β=87.839(2)°   γ=74.111(2)°

C32H12BF24,0.5(C42H46Ir2N2O2),CH2Cl2

C32H12BF24,0.5(C42H46Ir2N2O2),CH2Cl2

Turlington, Christopher R.White, Peter S.Brookhart, MauriceTempleton, Joseph L.

Journal of the American Chemical Society (2014) 136, 10 3981-3994

a=12.8140(2)Å   b=13.7210(2)Å   c=18.1145(3)Å

α=106.1770(10)°   β=110.3230(10)°   γ=98.0160(10)°

C30H27ClF6IrN2O,C32H12BF24

C30H27ClF6IrN2O,C32H12BF24

Turlington, Christopher R.White, Peter S.Brookhart, MauriceTempleton, Joseph L.

Journal of the American Chemical Society (2014) 136, 10 3981-3994

a=13.1858(3)Å   b=20.1500(5)Å   c=24.1403(6)Å

α=90°   β=100.1810(10)°   γ=90°

C30H27ClF6IrN2O,C32H12BF24

C30H27ClF6IrN2O,C32H12BF24

Turlington, Christopher R.White, Peter S.Brookhart, MauriceTempleton, Joseph L.

Journal of the American Chemical Society (2014) 136, 10 3981-3994

a=13.1858(3)Å   b=20.1500(5)Å   c=24.1403(6)Å

α=90°   β=100.1810(10)°   γ=90°

C24H46IrNO2P2

C24H46IrNO2P2

Marc D. WalterPeter S. WhiteCynthia K. SchauerMaurice Brookhart

Journal of the American Chemical Society (2013) 135, 15933-15947

a=8.4556(2)Å   b=10.6550(2)Å   c=16.3491(4)Å

α=97.280(2)°   β=104.437(2)°   γ=101.715(2)°

C23H44NO2P2Rh

C23H44NO2P2Rh

Marc D. WalterPeter S. WhiteCynthia K. SchauerMaurice Brookhart

Journal of the American Chemical Society (2013) 135, 15933-15947

a=8.3366(3)Å   b=12.2975(4)Å   c=13.5277(5)Å

α=100.065(2)°   β=96.798(2)°   γ=105.223(2)°

C44H38N10ORu2,2(F6P)

C44H38N10ORu2,2(F6P)

Hershel JudeFrancisca N. ReinPeter S. WhiteDana M. DattelbaumReginaldo C. Rocha

Inorganic Chemistry (2008) 47, 7695-7702

a=13.3312(4)Å   b=22.5379(6)Å   c=17.2818(4)Å

α=90.00°   β=99.497(2)°   γ=90.00°

C22H29NO4W

C22H29NO4W

Andrew B. JacksonChetna KhoslaPeter S. WhiteJoseph L. Templeton

Inorganic Chemistry (2008) 47, 8776-8787

a=8.4166(11)Å   b=10.2419(13)Å   c=13.3165(19)Å

α=99.903(6)°   β=97.032(7)°   γ=92.263(6)°

C32H12BF24,C23H32NO4W

C32H12BF24,C23H32NO4W

Andrew B. JacksonChetna KhoslaPeter S. WhiteJoseph L. Templeton

Inorganic Chemistry (2008) 47, 8776-8787

a=12.4372(3)Å   b=12.7720(3)Å   c=18.6366(5)Å

α=87.162(1)°   β=80.333(1)°   γ=79.078(1)°

C32H12BF24,C25H37NO4PW

C32H12BF24,C25H37NO4PW

Andrew B. JacksonChetna KhoslaPeter S. WhiteJoseph L. Templeton

Inorganic Chemistry (2008) 47, 8776-8787

a=12.7556(3)Å   b=19.0951(5)Å   c=24.7718(6)Å

α=90.00°   β=96.020(1)°   γ=90.00°

C36H55NO4PW,C32H12BF24,C4H10O

C36H55NO4PW,C32H12BF24,C4H10O

Andrew B. JacksonChetna KhoslaPeter S. WhiteJoseph L. Templeton

Inorganic Chemistry (2008) 47, 8776-8787

a=12.5015(2)Å   b=16.0383(3)Å   c=19.8966(4)Å

α=70.525(1)°   β=86.315(1)°   γ=84.339(1)°

C22H29N2O4W,C32H12BF24,0.5(C4H10O)

C22H29N2O4W,C32H12BF24,0.5(C4H10O)

Andrew B. JacksonChetna KhoslaPeter S. WhiteJoseph L. Templeton

Inorganic Chemistry (2008) 47, 8776-8787

a=13.0368(4)Å   b=13.0932(3)Å   c=20.0413(6)Å

α=76.898(2)°   β=80.350(2)°   γ=78.311(2)°

C12H8CuF12O7,C12H8CuF12O7

C12H8CuF12O7,C12H8CuF12O7

Visintin, Pamela M.Bessel, Carol A.White, Peter S.Schauer, Cynthia K.DeSimone, Joseph M.

Inorganic Chemistry (2005) 44, 2 316-324

a=13.8024(6)Å   b=20.8587(8)Å   c=14.2894(5)Å

α=90.00°   β=114.76(1)°   γ=90.00°

C12H5F12O7Zn

C12H5F12O7Zn

Visintin, Pamela M.Bessel, Carol A.White, Peter S.Schauer, Cynthia K.DeSimone, Joseph M.

Inorganic Chemistry (2005) 44, 2 316-324

a=21.4274(24)Å   b=7.4996(8)Å   c=23.8542(25)Å

α=90.0°   β=90.0°   γ=90.0°

WC22H34BN6O5SF3Cl4

WC22H34BN6O5SF3Cl4

Todd W. CranePeter S. WhiteJoseph L. Templeton

Inorganic Chemistry (2000) 39, 1081-1091

a=16.8117(7)Å   b=10.5521(5)Å   c=20.0591(9)Å

α=90.0°   β=112.238(1)°   γ=90.0°

WC17.35H25BN6O2Cl0.71

WC17.35H25BN6O2Cl0.71

Todd W. CranePeter S. WhiteJoseph L. Templeton

Inorganic Chemistry (2000) 39, 1081-1091

a=7.9595(7)Å   b=8.6224(8)Å   c=16.4166(15)Å

α=76.759(2)°   β=76.158(2)°   γ=78.260(2)°

C12H8CuF12O7,C12H8CuF12O7

C12H8CuF12O7,C12H8CuF12O7

Visintin, Pamela M.Bessel, Carol A.White, Peter S.Schauer, Cynthia K.DeSimone, Joseph M.

Inorganic Chemistry (2005) 44, 2 316-324

a=13.8024(6)Å   b=20.8587(8)Å   c=14.2894(5)Å

α=90.00°   β=114.76(1)°   γ=90.00°

C40H47MnN3O9

C40H47MnN3O9

Yong CuiHelen L. NgoPeter S. WhiteWenbin Lin

Inorganic Chemistry (2003) 42, 652-654

a=10.741(2)Å   b=13.818(3)Å   c=25.741(5)Å

α=90.00°   β=90.00°   γ=90.00°

C39H45CoN3O9

C39H45CoN3O9

Yong CuiHelen L. NgoPeter S. WhiteWenbin Lin

Inorganic Chemistry (2003) 42, 652-654

a=9.937(2)Å   b=14.482(3)Å   c=26.758(5)Å

α=90.00°   β=90.00°   γ=90.00°

C42H34CdN4O7

C42H34CdN4O7

Yong CuiHelen L. NgoPeter S. WhiteWenbin Lin

Inorganic Chemistry (2003) 42, 652-654

a=11.4484(10)Å   b=14.3019(12)Å   c=23.552(2)Å

α=90.00°   β=90.00°   γ=90.00°

C50H56Cd2Cl2N2O18

C50H56Cd2Cl2N2O18

Yong CuiHelen L. NgoPeter S. WhiteWenbin Lin

Inorganic Chemistry (2003) 42, 652-654

a=28.707(11)Å   b=14.507(6)Å   c=10.000(5)Å

α=90.00°   β=110.39°   γ=90.00°

H2TM-2-PyP(4+) 4ClO4(-)

C44H38N8Cl4O16

Ivan SpasojevićRamil MenzeleevPeter S. WhiteIrwin Fridovich

Inorganic Chemistry (2002) 41, 5874-5881

a=14.2846(15)Å   b=22.2158(24)Å   c=29.369(3)Å

α=90.0°   β=95.374(2)°   γ=90.0°

PtCl4C11H8N2O

PtCl4C11H8N2O

Katherine N. CrowderStephanie J. GarciaRebekah L. BurrJ. Micah NorthMike H. WilsonBrian L. ConleyPhillip E. FanwickPeter S. WhiteKarl D. SienerthRobert M. Granger

Inorganic Chemistry (2004) 43, 72-78

a=11.9268(2)Å   b=9.9789(2)Å   c=11.8599(2)Å

α=90.0°   β=91.414(1)°   γ=90.0°

?

C23H18Cl4N4O2Pt

Katherine N. CrowderStephanie J. GarciaRebekah L. BurrJ. Micah NorthMike H. WilsonBrian L. ConleyPhillip E. FanwickPeter S. WhiteKarl D. SienerthRobert M. Granger

Inorganic Chemistry (2004) 43, 72-78

a=8.2320(11)Å   b=8.7139(14)Å   c=19.097(2)Å

α=100.346(12)°   β=95.190(10)°   γ=115.117(13)°

C24H26ClIrN2O

C24H26ClIrN2O

Leah A. WingardMathew C. FinnissMichael NorrisPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Inorganic Chemistry (2013) 52, 515-526

a=12.5082(3)Å   b=11.5034(3)Å   c=14.9983(4)Å

α=90.00°   β=93.8010(10)°   γ=90.00°

C42H39ClIrN2P

C42H39ClIrN2P

Leah A. WingardMathew C. FinnissMichael NorrisPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Inorganic Chemistry (2013) 52, 515-526

a=11.7273(3)Å   b=16.9263(4)Å   c=17.7219(4)Å

α=90.00°   β=95.4520(10)°   γ=90.00°

C26H27IrN2O2

C26H27IrN2O2

Leah A. WingardMathew C. FinnissMichael NorrisPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Inorganic Chemistry (2013) 52, 515-526

a=10.3583(2)Å   b=10.4763(2)Å   c=12.0455(3)Å

α=73.8230(10)°   β=83.5340(10)°   γ=62.6830(10)°

C28H30IrN4,BF4

C28H30IrN4,BF4

Leah A. WingardMathew C. FinnissMichael NorrisPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Inorganic Chemistry (2013) 52, 515-526

a=8.9633(2)Å   b=11.9394(2)Å   c=12.6935(2)Å

α=82.3830(10)°   β=84.2520(10)°   γ=85.7140(10)°

C62H100Fe2O2

C62H100Fe2O2

Marc D. WalterPeter S. White

Inorganic Chemistry (2012) 51, 11860-11872

a=11.1695(5)Å   b=14.3936(6)Å   c=19.9752(8)Å

α=90.00°   β=93.7720(10)°   γ=90.00°

C58H78Fe2N2

C58H78Fe2N2

Marc D. WalterPeter S. White

Inorganic Chemistry (2012) 51, 11860-11872

a=10.9446(2)Å   b=38.0888(7)Å   c=13.1366(2)Å

α=90.00°   β=113.7010(10)°   γ=90.00°

C24H48FeSi2

C24H48FeSi2

Marc D. WalterPeter S. White

Inorganic Chemistry (2012) 51, 11860-11872

a=9.8466(10)Å   b=14.7897(16)Å   c=18.8919(19)Å

α=90.00°   β=94.933(6)°   γ=90.00°

C35H59FeO

C35H59FeO

Marc D. WalterPeter S. White

Inorganic Chemistry (2012) 51, 11860-11872

a=21.309(4)Å   b=16.214(3)Å   c=9.5786(16)Å

α=90.00°   β=92.013(5)°   γ=90.00°

C42H46AgIr2N2,CF3O3S

C42H46AgIr2N2,CF3O3S

Christopher R. TurlingtonDaniel P. HarrisonPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Inorganic Chemistry (2013) 52, 11351-11360

a=8.5002(2)Å   b=24.2243(5)Å   c=12.2503(2)Å

α=90°   β=101.345(1)°   γ=90°

C21H25IrNO,CF3O3S

C21H25IrNO,CF3O3S

Christopher R. TurlingtonDaniel P. HarrisonPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Inorganic Chemistry (2013) 52, 11351-11360

a=16.1914(4)Å   b=12.4570(3)Å   c=11.5310(3)Å

α=90.00°   β=107.4690(10)°   γ=90.00°

C15H23O6PW

C15H23O6PW

Jackson, Andrew B.White, Peter S.Templeton, Joseph L.

Inorganic Chemistry (2006) 45, 16 6205-6213

a=12.891(2)Å   b=9.4512(17)Å   c=15.714(3)Å

α=90.00°   β=105.093(3)°   γ=90.00°

C13H14O7W

C13H14O7W

Jackson, Andrew B.White, Peter S.Templeton, Joseph L.

Inorganic Chemistry (2006) 45, 16 6205-6213

a=15.261(8)Å   b=15.416(8)Å   c=12.883(8)Å

α=90.00°   β=94.87(2)°   γ=90.00°

C38H34O4W

C38H34O4W

Jackson, Andrew B.White, Peter S.Templeton, Joseph L.

Inorganic Chemistry (2006) 45, 16 6205-6213

a=9.5452(2)Å   b=9.8972(2)Å   c=16.9294(4)Å

α=98.5170(10)°   β=91.8690(10)°   γ=91.6310(10)°

C19H22O5W

C19H22O5W

Jackson, Andrew B.White, Peter S.Templeton, Joseph L.

Inorganic Chemistry (2006) 45, 16 6205-6213

a=8.4393(4)Å   b=20.2238(10)Å   c=11.1917(4)Å

α=90.0°   β=106.649(3)°   γ=90.0°

ReP6ClC61H58N2OF12

ReP6ClC61H58N2OF12

Annette L. SuingCharlotte R. DewanPeter S. WhiteH. Holden Thorp

Inorganic Chemistry (2000) 39, 6080-6085

a=11.340(3)Å   b=13.134(4)Å   c=13.3796(25)Å

α=102.370(20)°   β=107.688(17)°   γ=114.408(20)°

ReP6Cl3C59H55F12N

ReP6Cl3C59H55F12N

Annette L. SuingCharlotte R. DewanPeter S. WhiteH. Holden Thorp

Inorganic Chemistry (2000) 39, 6080-6085

a=22.3075(10)Å   b=23.1272(10)Å   c=23.3584(10)Å

α=90.0°   β=90.0°   γ=90.0°

ReP5Cl4C59.09H54.18F6N1.27

ReP5Cl4C59.09H54.18F6N1.27

Annette L. SuingCharlotte R. DewanPeter S. WhiteH. Holden Thorp

Inorganic Chemistry (2000) 39, 6080-6085

a=24.2381(11)Å   b=13.4504(6)Å   c=17.466(8)Å

α=90.0°   β=97.069(1)°   γ=90.0°

4b

PtP2SC54H49O4N

Jennifer J. BeckerPeter S. WhiteMichel R. Gagné

Inorganic Chemistry (1999) 38, 798-801

a=8.9041(6)Å   b=19.6838(12)Å   c=14.3184(9)Å

α=90.0°   β=106.5230(10)°   γ=90.0°

2a

PtP2S2C43H38F6N2O4Cl2

Jennifer J. BeckerPeter S. WhiteMichel R. Gagné

Inorganic Chemistry (1999) 38, 798-801

a=13.5266(8)Å   b=14.9709(9)Å   c=21.9952(13)Å

α=90.0°   β=90.0°   γ=90.0°

C26H28NO4W,C32H12BF24

C26H28NO4W,C32H12BF24

Andrew B. JacksonChetna KhoslaPeter S. WhiteJoseph L. Templeton

Inorganic Chemistry (2008) 47, 8776-8787

a=12.9884(4)Å   b=14.3778(5)Å   c=17.9290(6)Å

α=111.900(2)°   β=99.667(2)°   γ=99.845(2)°

C12H5F12O7Zn

C12H5F12O7Zn

Visintin, Pamela M.Bessel, Carol A.White, Peter S.Schauer, Cynthia K.DeSimone, Joseph M.

Inorganic Chemistry (2005) 44, 2 316-324

a=21.4274(24)Å   b=7.4996(8)Å   c=23.8542(25)Å

α=90.0°   β=90.0°   γ=90.0°

C24H28IrN2O2,BF4

C24H28IrN2O2,BF4

Leah A. WingardMathew C. FinnissMichael NorrisPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Inorganic Chemistry (2013) 52, 515-526

a=26.0020(6)Å   b=11.7258(3)Å   c=16.4472(4)Å

α=90.00°   β=100.461(2)°   γ=90.00°

C32H52FeO

C32H52FeO

Marc D. WalterPeter S. White

Inorganic Chemistry (2012) 51, 11860-11872

a=12.6864(4)Å   b=15.0289(4)Å   c=15.2002(4)Å

α=90.00°   β=97.573(2)°   γ=90.00°

ReC58H52Cl2F12P6N

ReC58H52Cl2F12P6N

Annette L. SuingCharlotte R. DewanPeter S. WhiteH. Holden Thorp

Inorganic Chemistry (2000) 39, 6080-6085

a=11.9403(6)Å   b=14.6673(8)Å   c=17.2664(9)Å

α=92.019(1)°   β=97.379(1)°   γ=90.134(1)°

PtB2C51H46F24N6O

PtB2C51H46F24N6O

Stefan ReinartzMu-Hyun BaikPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Inorganic Chemistry (2001) 40, 4726-4732

a=13.0550(6)Å   b=13.0718(6)Å   c=18.3242(8)Å

α=96.278(1)°   β=106.327(1)°   γ=102.242(1)°

PtB2C49H39F24N7

PtB2C49H39F24N7

Stefan ReinartzMu-Hyun BaikPeter S. WhiteMaurice BrookhartJoseph L. Templeton

Inorganic Chemistry (2001) 40, 4726-4732

a=12.8129(4)Å   b=13.0993(4)Å   c=18.9928(6)Å

α=78.741(1)°   β=87.858(1)°   γ=62.287(1)°

ReP6Cl2C52H48F12

ReP6Cl2C52H48F12

Annette L. SuingCharlotte R. DewanPeter S. WhiteH. Holden Thorp

Inorganic Chemistry (2000) 39, 6080-6085

a=11.1953(6)Å   b=13.3364(7)Å   c=16.9539(9)Å

α=90.0°   β=96.763(1)°   γ=90.0°

Fe3Mn2P2C43O13N2H42

Fe3Mn2P2C43O13N2H42

Boyce E. CollinsYoshihiro KoideCynthia K. SchauerPeter S. White

Inorganic Chemistry (1997) 36, 6172-6183

a=21.417(4)Å   b=12.6755(19)Å   c=19.231(4)Å

α=90.0°   β=116.550(16)°   γ=90.0°

Fe3Mn2As2C23H10O13

Fe3Mn2As2C23H10O13

Boyce E. CollinsYoshihiro KoideCynthia K. SchauerPeter S. White

Inorganic Chemistry (1997) 36, 6172-6183

a=15.6964(14)Å   b=8.5234(12)Å   c=22.072(3)Å

α=90.0°   β=92.941(9)°   γ=90.0°

Fe3Mn2Sb2C23H10O13

Fe3Mn2Sb2C23H10O13

Boyce E. CollinsYoshihiro KoideCynthia K. SchauerPeter S. White

Inorganic Chemistry (1997) 36, 6172-6183

a=17.584(3)Å   b=10.9043(9)Å   c=15.592(3)Å

α=90.0°   β=107.166(20)°   γ=90.0°

Fe3Cr2P2C19O19

Fe3Cr2P2C19O19

Boyce E. CollinsYoshihiro KoideCynthia K. SchauerPeter S. White

Inorganic Chemistry (1997) 36, 6172-6183

a=8.978(3)Å   b=9.826(3)Å   c=16.615(5)Å

α=96.16(3)°   β=97.65(3)°   γ=99.70(3)°

Fe3Sb2C19O19Cr2

Fe3Sb2C19O19Cr2

Boyce E. CollinsYoshihiro KoideCynthia K. SchauerPeter S. White

Inorganic Chemistry (1997) 36, 6172-6183

a=9.1049(12)Å   b=10.4578(14)Å   c=16.2420(13)Å

α=81.519(9)°   β=83.296(9)°   γ=80.129(11)°

Fe3Cr2As2C19O19

Fe3Cr2As2C19O19

Boyce E. CollinsYoshihiro KoideCynthia K. SchauerPeter S. White

Inorganic Chemistry (1997) 36, 6172-6183

a=9.0047(13)Å   b=10.0693(9)Å   c=16.7760(23)Å

α=81.948(9)°   β=76.88(2)°   γ=82.920(9)°

C25H42IIrNO6P

C25H42IIrNO6P

Gregor, Lauren C.Grajeda, JavierKita, Matthew R.White, Peter S.Vetter, Andrew J.Miller, Alexander J. M.

Organometallics (2016) 35, 17 3074

a=9.3658(2)Å   b=14.7653(3)Å   c=40.8371(9)Å

α=90.00°   β=90.00°   γ=90.00°

C25H41IrNO7P

C25H41IrNO7P

Gregor, Lauren C.Grajeda, JavierKita, Matthew R.White, Peter S.Vetter, Andrew J.Miller, Alexander J. M.

Organometallics (2016) 35, 17 3074

a=18.127(2)Å   b=7.9807(11)Å   c=19.276(3)Å

α=90°   β=102.644(7)°   γ=90°

C26H42IrNO7P,C32H12BF24

C26H42IrNO7P,C32H12BF24

Gregor, Lauren C.Grajeda, JavierKita, Matthew R.White, Peter S.Vetter, Andrew J.Miller, Alexander J. M.

Organometallics (2016) 35, 17 3074

a=18.2346(7)Å   b=17.6765(6)Å   c=37.7548(14)Å

α=90°   β=90°   γ=90°

C50H44Br4N4Ni2,2(C3H6O)

C50H44Br4N4Ni2,2(C3H6O)

Chen, ZhouAllen, Kate E.White, Peter S.Daugulis, OlafsBrookhart, Maurice

Organometallics (2016) 35, 11 1756

a=9.5363(4)Å   b=10.2016(4)Å   c=14.0506(6)Å

α=96.9349(16)°   β=97.0991(17)°   γ=107.7220(16)°

C44H39F6IrN4O4S2,C32H12BF24,CH2Cl2

C44H39F6IrN4O4S2,C32H12BF24,CH2Cl2

Turlington, Christopher R.White, Peter S.Brookhart, MauriceTempleton, Joseph L.

Organometallics (2015) 34, 20 4810

a=24.7042(4)Å   b=17.9764(3)Å   c=18.7177(3)Å

α=90°   β=109.2946(6)°   γ=90°

C20H28BN7OW

C20H28BN7OW

Beattie, Ross J.White, Peter S.Templeton, Joseph L.

Organometallics (2015) 35, 1 32

a=9.9474(6)Å   b=10.1924(6)Å   c=12.0642(8)Å

α=91.531(5)°   β=104.687(4)°   γ=108.251(4)°

C21H31BN7OW,C7H18N,2(CF3O3S)

C21H31BN7OW,C7H18N,2(CF3O3S)

Beattie, Ross J.White, Peter S.Templeton, Joseph L.

Organometallics (2015) 35, 1 32

a=8.1886(3)Å   b=12.4277(4)Å   c=20.3819(7)Å

α=83.5274(19)°   β=78.803(2)°   γ=89.4183(19)°

C22H33BN7OW,CF3O3S

C22H33BN7OW,CF3O3S

Beattie, Ross J.White, Peter S.Templeton, Joseph L.

Organometallics (2015) 35, 1 32

a=8.0823(6)Å   b=12.4028(8)Å   c=14.5630(10)Å

α=82.414(3)°   β=84.135(4)°   γ=89.855(3)°

C39H43BN7OW,2(C4H8O),BF4

C39H43BN7OW,2(C4H8O),BF4

Beattie, Ross J.White, Peter S.Templeton, Joseph L.

Organometallics (2015) 35, 1 32

a=12.7179(11)Å   b=18.9078(17)Å   c=19.0535(17)Å

α=90°   β=90°   γ=90°

C24H28N2PtS

C24H28N2PtS

Traversa, EliseTempleton, Joseph L.Cheng, Hiu YanMohadjer Beromi, MeganWhite, Peter S.West, Nathan M.

Organometallics (2013) 32, 6 1938

a=12.6651(8)Å   b=9.9737(6)Å   c=18.3405(10)Å

α=90.00°   β=106.824(4)°   γ=90.00°

C30H40N3PtS,CF3O3S

C30H40N3PtS,CF3O3S

Traversa, EliseTempleton, Joseph L.Cheng, Hiu YanMohadjer Beromi, MeganWhite, Peter S.West, Nathan M.

Organometallics (2013) 32, 6 1938

a=9.3286(2)Å   b=12.9106(2)Å   c=14.9100(3)Å

α=83.989(1)°   β=73.274(1)°   γ=83.268(1)°

C28H40N2PPtS,CF3O3S,H2O

C28H40N2PPtS,CF3O3S,H2O

Traversa, EliseTempleton, Joseph L.Cheng, Hiu YanMohadjer Beromi, MeganWhite, Peter S.West, Nathan M.

Organometallics (2013) 32, 6 1938

a=13.5687(7)Å   b=19.0331(12)Å   c=13.5212(7)Å

α=90.00°   β=110.214(2)°   γ=90.00°

C24H39IrNO6P

C24H39IrNO6P

Grajeda, JavierKita, Matthew R.Gregor, Lauren C.White, Peter S.Miller, Alexander J. M.

Organometallics (2016) 35, 306-316

a=11.8015(3)Å   b=13.5970(4)Å   c=17.1601(5)Å

α=96.312(2)°   β=98.081(2)°   γ=101.330(2)°

C24H40ClIrNO6P

C24H40ClIrNO6P

Grajeda, JavierKita, Matthew R.Gregor, Lauren C.White, Peter S.Miller, Alexander J. M.

Organometallics (2016) 35, 306-316

a=9.7702(5)Å   b=11.7884(6)Å   c=11.7937(6)Å

α=90°   β=91.0496(16)°   γ=90°

C31H36INO4RhS,CH2Cl2,C32H12BF24

C31H36INO4RhS,CH2Cl2,C32H12BF24

Turlington, Christopher R.Morris, JamesWhite, Peter S.Brennessel, William W.Jones, William D.Brookhart, MauriceTempleton, Joseph L.

Organometallics (2014) 33, 17 4442

a=15.5769(4)Å   b=25.1329(8)Å   c=19.3985(5)Å

α=90°   β=113.4368(14)°   γ=90°

Jonjcm27

C42H46N2O2Rh2,2(CF3O3S)

Turlington, Christopher R.Morris, JamesWhite, Peter S.Brennessel, William W.Jones, William D.Brookhart, MauriceTempleton, Joseph L.

Organometallics (2014) 33, 17 4442

a=9.925(3)Å   b=10.598(3)Å   c=11.517(3)Å

α=91.647(4)°   β=115.317(4)°   γ=91.827(4)°

Jonjcm23

C42H46N2O2Rh2,2(BF4)

Turlington, Christopher R.Morris, JamesWhite, Peter S.Brennessel, William W.Jones, William D.Brookhart, MauriceTempleton, Joseph L.

Organometallics (2014) 33, 17 4442

a=11.7271(14)Å   b=15.6966(19)Å   c=20.646(3)Å

α=90.00°   β=90.00°   γ=90.00°

I3 As F6

AsF6I3

Passmore, J.Sutherland, G.W.White, P.S.

Inorganic Chemistry (1981) 20, 2169-2171

a=8.054Å   b=5.942Å   c=10.503Å

α=103.08°   β=88.95°   γ=100.35°

((Se I2)2 (As F6)2) (S O2)

As2F12I4O2SSe2

Nandana, W.A.S.White, P.S.Passmore, J.Wong, C.-M.

Inorganic Chemistry (1990) 29, 3529-3538

a=13.454Å   b=9.93Å   c=14.567Å

α=90°   β=93.2°   γ=90°

S7 I Sb F6

F6IS7Sb

Passmore, J.Sutherland, G.W.Taylor, P.Whidden, T.K.White, P.S.

Inorganic Chemistry (1981) 20, 3839-3845

a=11.786Å   b=9.187Å   c=12.4Å

α=90°   β=90°   γ=90°

S7 I As F6

AsF6IS7

Passmore, J.Whidden, T.K.Sutherland, G.W.Taylor, P.White, P.S.

Inorganic Chemistry (1981) 20, 3839-3845

a=15.516Å   b=11.813Å   c=11.65Å

α=107.3°   β=74.71°   γ=104.62°

(Se6 I) (As F6)

AsF6ISe6

Nandana, W.A.S.Passmore, J.White, P.S.Wong, C.-M.

Inorganic Chemistry (1989) 28, 3320-3328

a=9.085Å   b=6.948Å   c=10.47Å

α=90°   β=107.27°   γ=90°

(Se6 I) (Sb F6)

F6ISbSe6

Nandana, W.A.S.Passmore, J.White, P.S.Wong, C.-M.

Inorganic Chemistry (1989) 28, 3320-3328

a=9.232Å   b=7.025Å   c=10.638Å

α=90°   β=108.21°   γ=90°

C37H32Cl2N2PtSi

C37H32Cl2N2PtSi

West, Nathan M.White, Peter S.Templeton, Joseph L.

Organometallics (2008) 27, 20 5252

a=10.2345(2)Å   b=11.6447(2)Å   c=14.6854(3)Å

α=97.484(1)°   β=90.520(1)°   γ=91.588(1)°

C23H26Cl2N2OPtSi

C23H26Cl2N2OPtSi

West, Nathan M.White, Peter S.Templeton, Joseph L.

Organometallics (2008) 27, 20 5252

a=12.6224(5)Å   b=9.5550(4)Å   c=20.1223(8)Å

α=90.00°   β=91.486(2)°   γ=90.00°