Structures by: Miller J. S.

Total: 144

C21H27ClFe3N3O20

C21H27ClFe3N3O20

Wendy HibbsPetra J. van KoningsbruggenAtta M. ArifWilliam W. ShumJoel S. Miller

Inorganic Chemistry (2003) 42, 5645-5653

a=10.1547(7)Å   b=16.5497(11)Å   c=10.3205(9)Å

α=90.00°   β=109.820(3)°   γ=90.00°

C18H18Cl2FeN6O14

C18H18Cl2FeN6O14

Wendy HibbsPetra J. van KoningsbruggenAtta M. ArifWilliam W. ShumJoel S. Miller

Inorganic Chemistry (2003) 42, 5645-5653

a=17.5829(3)Å   b=17.5829(3)Å   c=7.8043(2)Å

α=90.00°   β=90.00°   γ=120.00°

Potassium cyanomanganate

C6K2Mn2N6

Jae-Hyuk HerPeter W. StephensChristopher M. KareisJoshua G. MooreKil Sik MinJong-Won ParkGarima BaliBretni S. KennonJoel S. Miller

Inorganic Chemistry (2010) 49, 1524-1534

a=10.17855(13)Å   b=7.41244(10)Å   c=6.97575(11)Å

α=90°   β=90.2058(11)°   γ=90°

Rubidium cyanomanganate

C6Mn2N6Rb2

Jae-Hyuk HerPeter W. StephensChristopher M. KareisJoshua G. MooreKil Sik MinJong-Won ParkGarima BaliBretni S. KennonJoel S. Miller

Inorganic Chemistry (2010) 49, 1524-1534

a=10.410150(66)Å   b=7.449200(55)Å   c=7.213190(53)Å

α=90°   β=90.07202(60)°   γ=90°

Cesium cyanomanganate

C6Cs2Mn2N6

Jae-Hyuk HerPeter W. StephensChristopher M. KareisJoshua G. MooreKil Sik MinJong-Won ParkGarima BaliBretni S. KennonJoel S. Miller

Inorganic Chemistry (2010) 49, 1524-1534

a=10.60605(12)Å   b=10.60605(12)Å   c=10.60605(12)Å

α=90°   β=90°   γ=90°

C24H6Co2N24O5

C24H6Co2N24O5

Shireen R. MarshallArnold L. RheingoldLouise N. DaweWilliam W. ShumChitoshi KitamuraJoel S. Miller

Inorganic Chemistry (2002) 41, 3599-3601

a=13.655(3)Å   b=15.189(3)Å   c=22.367(4)Å

α=90.00°   β=114.100(2)°   γ=90.00°

(Ph4P){Co[N(CN)2]3}

(Ph4P){Co[N(CN)2]3}

James W. RaebigerJamie L. MansonRoger D. SommerUrs GeiserArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2001) 40, 2578-2581

a=13.4354(10)Å   b=7.4426(5)Å   c=14.1556(10)Å

α=90.00°   β=101.0870(10)°   γ=90.00°

(Ph4P)2{Co[N(CN)2]4}

(Ph4P)2{Co[N(CN)2]4}

James W. RaebigerJamie L. MansonRoger D. SommerUrs GeiserArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2001) 40, 2578-2581

a=23.3789(10)Å   b=7.5684(3)Å   c=28.3778(12)Å

α=90.00°   β=105.6210(10)°   γ=90.00°

(Ph4P){Mn[N(CN)2]3}

(Ph4P){Mn[N(CN)2]3}

James W. RaebigerJamie L. MansonRoger D. SommerUrs GeiserArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2001) 40, 2578-2581

a=13.3903(6)Å   b=7.5745(3)Å   c=14.3935(6)Å

α=90.00°   β=99.663(2)°   γ=90.00°

C4FeN4S4,2(C4H12N),C2H3N

C4FeN4S4,2(C4H12N),C2H3N

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=10.8727(2)Å   b=10.96200(10)Å   c=12.5335(2)Å

α=111.0992(9)°   β=112.9976(8)°   γ=97.0445(10)°

C10H12FeN6S2

C10H12FeN6S2

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=10.7457(7)Å   b=10.7457(7)Å   c=14.4185(13)Å

α=90.00°   β=90.00°   γ=90.00°

C6H6CrN4S2

C6H6CrN4S2

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=9.08966(13)Å   b=9.16685(11)Å   c=12.6894(2)Å

α=90°   β=90°   γ=90°

C6H6MnN4S2

C6H6MnN4S2

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=9.0889(13)Å   b=9.0476(13)Å   c=13.1775(18)Å

α=90.00°   β=104.994(2)°   γ=90.00°

C30H48Co3N6O6S6

C30H48Co3N6O6S6

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=10.0641(10)Å   b=10.2026(9)Å   c=11.1551(11)Å

α=70.675(7)°   β=71.120(5)°   γ=77.773(6)°

C18H32N2O4S2V

C18H32N2O4S2V

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=15.2033(3)Å   b=10.0157(2)Å   c=16.1131(3)Å

α=90.00°   β=111.6140(13)°   γ=90.00°

C18H32N2NiO4S2

C18H32N2NiO4S2

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=14.9647(8)Å   b=9.9927(5)Å   c=15.9621(8)Å

α=90.00°   β=112.0140(10)°   γ=90.00°

C7H4FeN6S2

C7H4FeN6S2

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=5.5742(1)Å   b=6.13885(12)Å   c=11.4552(3)Å

α=78.4226(8)°   β=80.0358(8)°   γ=78.2382(15)°

C4CoN4S4,2(C4H12N)

C4CoN4S4,2(C4H12N)

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=24.6433(2)Å   b=11.30658(11)Å   c=24.9333(3)Å

α=90°   β=94.7301(9)°   γ=90°

C6N6S6V,C0.75O0.25,4(K)

C6N6S6V,C0.75O0.25,4(K)

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=8.458801(23)Å   b=8.458801(23)Å   c=9.193656(37)Å

α=90°   β=90°   γ=120°

C6N6S6Ni,C0.75O0.25,4(K)

C6N6S6Ni,C0.75O0.25,4(K)

Endrit ShurdhaCurtis E. MooreArnold L. RheingoldSaul H. LapidusPeter W. StephensAtta M. ArifJoel S. Miller

Inorganic Chemistry (2013) 52, 10583-10594

a=8.451111(78)Å   b=8.451111Å   c=9.16677(17)Å

α=90°   β=90°   γ=120°

C50H56BCl2Co2F4N8O6

C50H56BCl2Co2F4N8O6

Min, Kil SikRheingold, Arnold L.DiPasquale, AntonioMiller, Joel S.

Inorganic Chemistry (2006) 45, 16 6135-6137

a=13.846(7)Å   b=11.493(6)Å   c=15.958(8)Å

α=90.00°   β=90.687(9)°   γ=90.00°

C2CoN2S2

C2CoN2S2

Endrit ShurdhaSaul H. LapidusPeter W. StephensCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2012) 51, 9655-9665

a=10.5959(3)Å   b=3.72504(11)Å   c=6.16597(19)Å

α=90°   β=105.862(3)°   γ=90°

C12CoN8

C12CoN8

Endrit ShurdhaSaul H. LapidusPeter W. StephensCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2012) 51, 9655-9665

a=14.2343(5)Å   b=17.2526(10)Å   c=7.2908(3)Å

α=90°   β=90°   γ=90°

C18H12MnN8O2

C18H12MnN8O2

Endrit ShurdhaSaul H. LapidusPeter W. StephensCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2012) 51, 9655-9665

a=7.8212(2)Å   b=11.6487(3)Å   c=11.6871(3)Å

α=90°   β=99.055(3)°   γ=90°

C18H12CoN8O2

C18H12CoN8O2

Endrit ShurdhaSaul H. LapidusPeter W. StephensCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2012) 51, 9655-9665

a=7.9191(2)Å   b=11.3882(3)Å   c=11.4825(3)Å

α=90°   β=100.558(3)°   γ=90°

C8H12CrN2O2S2

C8H12CrN2O2S2

Endrit ShurdhaSaul H. LapidusPeter W. StephensCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2012) 51, 9655-9665

a=5.734(4)Å   b=7.769(5)Å   c=7.820(5)Å

α=107.905(9)°   β=99.027(9)°   γ=98.315(9)°

C8H12MnN2O2S2

C8H12MnN2O2S2

Endrit ShurdhaSaul H. LapidusPeter W. StephensCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2012) 51, 9655-9665

a=5.801(8)Å   b=7.874(10)Å   c=8.036(12)Å

α=110.69(3)°   β=99.104(16)°   γ=97.89(3)°

Nickel diruthenium(II,III) tetracarbonate

C4H8NiO16Ru2solvent

Kennon, Bretni S.Her, Jae-HyukStephens, Peter W.Shum, William W.Miller, Joel S.

Inorganic chemistry (2007) 46, 22 9033-9035

a=18.1943(3)Å   b=9.3573(1)Å   c=10.0465(1)Å

α=90°   β=90°   γ=90°

C22H28Cu2F12O10

C22H28Cu2F12O10

Lopez, NazarioVos, Thomas E.Arif, Atta M.Shum, William W.Noveron, Juan C.Miller, Joel S.

Inorganic Chemistry (2006) 45, 11 4325-4327

a=24.7528(7)Å   b=14.8648(4)Å   c=18.6915(3)Å

α=90.00°   β=110.1297(14)°   γ=90.00°

C16H6CoN10

C16H6CoN10

Endrit ShurdhaSaul H. LapidusPeter W. StephensCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2012) 51, 9655-9665

a=7.5754(2)Å   b=11.4839(3)Å   c=11.1083(3)Å

α=90°   β=107.101(3)°   γ=90°

C28H26CuN4O6

C28H26CuN4O6

Juan C. NoveronMyoung Soo LahRico E. Del SestoAtta M. ArifJoel S. MillerPeter J. Stang

Journal of the American Chemical Society (2002) 124, 6613-6625

a=8.0203(2)Å   b=8.7561(3)Å   c=9.8058(3)Å

α=76.776(2)°   β=75.4011(18)°   γ=83.5565(14)°

Acetonitriledichloroiron(II)

C4H6Cl2MnN2

Konstantin I. PokhodnyaMichael BonnerAntonio G. DiPasqualeArnold L. RheingoldJae-Hyuk HerPeter W. StephensJong-Won ParkBretni S. KennonAtta M. ArifJoel S. Miller

Inorganic Chemistry (2007) 46, 2471-2477

a=8.125(3)Å   b=13.368(5)Å   c=3.7430(15)Å

α=90.00°   β=90.00°   γ=90.00°

C18H12FeN8O2

C18H12FeN8O2

Endrit ShurdhaSaul H. LapidusPeter W. StephensCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2012) 51, 9655-9665

a=7.8809(3)Å   b=11.4483(5)Å   c=11.5662(4)Å

α=90°   β=100.146(4)°   γ=90°

C8H12FeN2O2S2

C8H12FeN2O2S2

Endrit ShurdhaSaul H. LapidusPeter W. StephensCurtis E. MooreArnold L. RheingoldJoel S. Miller

Inorganic Chemistry (2012) 51, 9655-9665

a=5.7215(8)Å   b=7.6941(11)Å   c=7.8456(12)Å

α=109.864(2)°   β=99.983(2)°   γ=97.286(2)°

C34H34Cu2N2O10

C34H34Cu2N2O10

Rico E. Del SestoAtta M. ArifJoel S. Miller

Inorganic Chemistry (2000) 39, 4894-4902

a=10.5055(2)Å   b=10.0650(4)Å   c=16.2460(5)Å

α=90.00°   β=93.764(2)°   γ=90.00°

C24H20Br2CuN2O5

C24H20Br2CuN2O5

Rico E. Del SestoAtta M. ArifJoel S. Miller

Inorganic Chemistry (2000) 39, 4894-4902

a=15.8610(9)Å   b=5.8690(2)Å   c=14.9720(8)Å

α=90.00°   β=121.3811(15)°   γ=90.00°

C24H18Br2CuN2O4

C24H18Br2CuN2O4

Rico E. Del SestoAtta M. ArifJoel S. Miller

Inorganic Chemistry (2000) 39, 4894-4902

a=5.9662(2)Å   b=8.1860(3)Å   c=12.8681(5)Å

α=94.1200(19)°   β=99.512(2)°   γ=99.944(2)°

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°

C6H6K3O15V

C6H6K3O15V

Kil Sik MinArnold L. RhinegoldJoel S. Miller

Inorganic Chemistry (2005) 44, 8433-8441

a=7.7303(6)Å   b=19.9435(16)Å   c=10.2616(8)Å

α=90.00°   β=107.6710(10)°   γ=90.00°

C2MnN2

C2MnN2

Christopher M. KareisSaul H. LapidusPeter W. StephensJoel S. Miller

Inorganic Chemistry (2012) 51, 3046-3050

a=6.14879(18)Å   b=6.14879(18)Å   c=6.14879(18)Å

α=90°   β=90°   γ=90°

K1.75 Pt (C N)4 (H2 O)1.5

C4H3K1.75N4O1.5Pt

Reis, A.H.jr.Peterson, S.W.Miller, J.S.Washecheck, D.M.

Inorganic Chemistry (1976) 15, 2455-2462

a=10.323Å   b=9.285Å   c=11.865Å

α=77.31°   β=114.85°   γ=73.84°

C4CoN6

C4CoN6

Manson, J. L.Kmety, C. R.Huang, Q. Z.Lynn, J. W.Bendele, G. M.Pagola, S.Stephens, P. W.Liable-Sands, L. M.Rheingold, A. L.Epstein, A. J.Miller, J. S.

Chemistry of Materials (1998) 10, 2552-2560

a=5.9985Å   b=7.0711Å   c=7.4140Å

α=90.000°   β=90.000°   γ=90.000°

C4N6Ni

C4N6Ni

Manson, J. L.Kmety, C. R.Huang, Q. Z.Lynn, J. W.Bendele, G. M.Pagola, S.Stephens, P. W.Liable-Sands, L. M.Rheingold, A. L.Epstein, A. J.Miller, J. S.

Chemistry of Materials (1998) 10, 2552-2560

a=5.9736Å   b=7.0320Å   c=7.2942Å

α=90.000°   β=90.000°   γ=90.000°