Structures by: Martin J. D.

Total: 33

C15H16O2

C15H16O2

Wolak, J. E.Knutson, J.Martin, J. D.Boyle, P.Sargent, Andrew L.White, Jeffery L.

The Journal of Physical Chemistry B (2003) 107, 48 13293

a=17.950(2)Å   b=18.879(3)Å   c=11.2281(13)Å

α=90.0°   β=100.700(12)°   γ=90.0°

Cu2 (Zr Cl6)

Cl6Cu2Zr

Dattelbaum, A.M.He, L.Tsui, F.Martin, J.D.

Journal of Alloys Compd. (2002) 338, 173-184

a=10.9892Å   b=10.9892Å   c=6.1517Å

α=90°   β=90°   γ=120°

C16H16Cl2N2O4Pt

C16H16Cl2N2O4Pt

Allenbaugh, Rachel J.Schauer, Cynthia K.Josey, AmandaMartin, James D.Anokhin, Denis V.Ivanov, Dimitri A.

Chemistry of Materials (2012) 24, 23 4517

a=9.1145(4)Å   b=14.6632(7)Å   c=15.2749(7)Å

α=61.445(3)°   β=82.988(3)°   γ=84.057(3)°

C14H12Cl2N2O4Pt1,CH2Cl2

C14H12Cl2N2O4Pt1,CH2Cl2

Allenbaugh, Rachel J.Schauer, Cynthia K.Josey, AmandaMartin, James D.Anokhin, Denis V.Ivanov, Dimitri A.

Chemistry of Materials (2012) 24, 23 4517

a=17.2723(16)Å   b=6.7511(7)Å   c=17.6663(17)Å

α=90°   β=115.134(6)°   γ=90°

C44H72Cl2N2O4Pt,2(CHCl3)

C44H72Cl2N2O4Pt,2(CHCl3)

Allenbaugh, Rachel J.Schauer, Cynthia K.Josey, AmandaMartin, James D.Anokhin, Denis V.Ivanov, Dimitri A.

Chemistry of Materials (2012) 24, 23 4517

a=7.2871(5)Å   b=11.8947(8)Å   c=31.3949(20)Å

α=94.642(4)°   β=90.283(4)°   γ=95.377(4)°

C40H54CoN2O4

C40H54CoN2O4

R. D. SchmidtD. A. ShultzJ. D. MartinP. D. Boyle

Journal of the American Chemical Society (2010) 132, 6261-6273

a=10.3350(6)Å   b=10.0315(6)Å   c=21.6292(13)Å

α=90.00°   β=90.820(3)°   γ=90.00°

C38H48Br2CoN2O4

C38H48Br2CoN2O4

R. D. SchmidtD. A. ShultzJ. D. MartinP. D. Boyle

Journal of the American Chemical Society (2010) 132, 6261-6273

a=6.6135(2)Å   b=9.6729(3)Å   c=14.9230(5)Å

α=85.1702(17)°   β=82.1886(18)°   γ=81.5996(17)°

C40H54CoN2O6

C40H54CoN2O6

R. D. SchmidtD. A. ShultzJ. D. MartinP. D. Boyle

Journal of the American Chemical Society (2010) 132, 6261-6273

a=11.6823(16)Å   b=21.061(3)Å   c=7.4348(11)Å

α=90.00°   β=93.540(3)°   γ=90.00°

C38H48CoN4O8

C38H48CoN4O8

R. D. SchmidtD. A. ShultzJ. D. MartinP. D. Boyle

Journal of the American Chemical Society (2010) 132, 6261-6273

a=11.7175(9)Å   b=22.4237(18)Å   c=7.2830(6)Å

α=90.00°   β=90.286(4)°   γ=90.00°

(C38H50N2O4Co),0.5(C7H16)

(C38H50N2O4Co),0.5(C7H16)

R. D. SchmidtD. A. ShultzJ. D. MartinP. D. Boyle

Journal of the American Chemical Society (2010) 132, 6261-6273

a=10.463(2)Å   b=9.266(2)Å   c=22.165(5)Å

α=90.00°   β=94.838(4)°   γ=90.00°

C10H24Fe5N4O40P8

C10H24Fe5N4O40P8

Fiona R. KizewskiPaul BoyleDean HesterbergJames D. Martin

Journal of the American Chemical Society (2010) 132, 2301-2308

a=9.7851(3)Å   b=9.8986(3)Å   c=10.7420(3)Å

α=73.7900(15)°   β=71.6838(14)°   γ=79.3001(13)°

CAlCl4CuO

CAlCl4CuO

Michael D. CapracottaRoger M. SullivanJames D. Martin

Journal of the American Chemical Society (2006) 128, 13463-13473

a=6.8752(3)Å   b=7.0092(3)Å   c=8.7362(3)Å

α=81.798(2)°   β=69.646(2)°   γ=85.723(2)°

CuGaCl4

CuGaCl4

Michael D. CapracottaRoger M. SullivanJames D. Martin

Journal of the American Chemical Society (2006) 128, 13463-13473

a=5.4119(4)Å   b=5.4119Å   c=10.2007(17)Å

α=90.0°   β=90.0°   γ=90.0°

COCuGaCl4

COCuGaCl4

Michael D. CapracottaRoger M. SullivanJames D. Martin

Journal of the American Chemical Society (2006) 128, 13463-13473

a=6.8769(10)Å   b=7.0155(11)Å   c=8.7594(16)Å

α=80.998(18)°   β=69.454(13)°   γ=85.731(18)°

Beta-et-1

C2H4AlCl4Cu

Roger M. SullivanHaiming LiuD. Steve SmithJonathan C. HansonDerek OsterhoutMichael CiraoloClare P. GreyJames D. Martin

Journal of the American Chemical Society (2003) 125, 11065-11079

a=7.3060(15)Å   b=16.133(3)Å   c=7.0940(14)Å

α=90.00°   β=90.00°   γ=90.00°

C4H8CuAlCl4

C4H8CuAlCl4

Roger M. SullivanHaiming LiuD. Steve SmithJonathan C. HansonDerek OsterhoutMichael CiraoloClare P. GreyJames D. Martin

Journal of the American Chemical Society (2003) 125, 11065-11079

a=7.1274(5)Å   b=12.5090(12)Å   c=11.997(3)Å

α=90.0°   β=91.190(12)°   γ=90.0°

C40H48CoN4O4

C40H48CoN4O4

Robert D. SchmidtDavid A. ShultzJames D. Martin

Inorganic Chemistry (2010) 49, 3162-3168

a=11.7031(5)Å   b=22.8781(9)Å   c=7.2110(3)Å

α=90.00°   β=90.209(3)°   γ=90.00°

C40H48CoN4O4

C40H48CoN4O4

Robert D. SchmidtDavid A. ShultzJames D. Martin

Inorganic Chemistry (2010) 49, 3162-3168

a=11.6531(8)Å   b=22.4266(14)Å   c=7.2851(5)Å

α=90.00°   β=91.665(4)°   γ=90.00°

I3La3Ru

I3La3Ru

Martin KöckerlingJames D. Martin

Inorganic Chemistry (2001) 40, 389-395

a=9.343(1)Å   b=4.3469(8)Å   c=12.496(3)Å

α=90.00°   β=93.42(2)°   γ=90.00°

MnCl4N2O2H12

MnCl4N2O2H12

James D. MartinRyan F. HessPaul D. Boyle

Inorganic Chemistry (2004) 43, 3242-3247

a=7.5250(5)Å   b=7.5250(5)Å   c=8.2760(17)Å

α=90.0°   β=90.0°   γ=90.0°

MnC2O2Cl2H7N

MnC2O2Cl2H7N

James D. MartinRyan F. HessPaul D. Boyle

Inorganic Chemistry (2004) 43, 3242-3247

a=15.191(6)Å   b=7.044(2)Å   c=13.603(6)Å

α=90.0°   β=107.31(4)°   γ=90.0°

ZrCuCl6NC2

ZrCuCl6NC2

Andrew M. DattelbaumJames D. Martin

Inorganic Chemistry (1999) 38, 2369-2374

a=10.1105(6)Å   b=9.9463(5)Å   c=12.7254(8)Å

α=90.0°   β=110.287(5)°   γ=90.0°

C54H64CoN4O4

C54H64CoN4O4

R. D. SchmidtD. A. ShultzJ. D. MartinP. D. Boyle

Journal of the American Chemical Society (2010) 132, 6261-6273

a=15.3071(7)Å   b=21.9836(11)Å   c=7.3680(3)Å

α=90.00°   β=91.239(2)°   γ=90.00°

ZrCuCl6NC2H8

ZrCuCl6NC2H8

Andrew M. DattelbaumJames D. Martin

Inorganic Chemistry (1999) 38, 2369-2374

a=10.2345(17)Å   b=9.4269(11)Å   c=12.6910(20)Å

α=90.0°   β=109.900(20)°   γ=90.0°

ZrCu2Cl6C12H12

ZrCu2Cl6C12H12

Andrew M. DattelbaumJames D. Martin

Inorganic Chemistry (1999) 38, 6200-6205

a=6.1206(4)Å   b=11.1242(4)Å   c=13.6222(6)Å

α=90.0°   β=93.675(3)°   γ=90.0°

CuAlBr4

CuAlBr4

James D. MartinBrian R. LeafbladRoger M. SullivanPaul D. Boyle

Inorganic Chemistry (1998) 37, 1341-1346

a=5.73210(20)Å   b=5.73210(20)Å   c=10.6046(8)Å

α=90.0°   β=90.0°   γ=90.0°

Beta-CuAlCl4

CuAlCl4

James D. MartinBrian R. LeafbladRoger M. SullivanPaul D. Boyle

Inorganic Chemistry (1998) 37, 1341-1346

a=12.8388(5)Å   b=7.6455(3)Å   c=6.1264(3)Å

α=90.0°   β=90.0°   γ=90.0°

C14H25N3NiO3

C14H25N3NiO3

James D. MartinKhalil A. AbboudKlaus-Hermann Dahmen

Inorganic Chemistry (1998) 37, 5811-5815

a=8.2350(1)Å   b=14.0895(2)Å   c=13.7965(1)Å

α=90.00°   β=95.964(1)°   γ=90.00°

H12O6Zn,Cl4Zn

H12O6Zn,Cl4Zn

Wilcox, Robert J.Losey, Bradley P.Folmer, Jacob C. W.Martin, James D.Zeller, MatthiasSommer, Roger

Inorganic chemistry (2015) 54, 3 1109-1119

a=6.4421(15)Å   b=6.5034(15)Å   c=14.281(3)Å

α=90.626(3)°   β=99.082(3)°   γ=95.490(3)°

Losey12

D12O6Zn,Cl4Zn

Wilcox, Robert J.Losey, Bradley P.Folmer, Jacob C. W.Martin, James D.Zeller, MatthiasSommer, Roger

Inorganic chemistry (2015) 54, 3 1109-1119

a=6.4738(9)Å   b=6.5054(8)Å   c=14.2949(18)Å

α=90.656(3)°   β=98.936(3)°   γ=95.498(3)°

H12O6Zn,Cl4Zn

H12O6Zn,Cl4Zn

Wilcox, Robert J.Losey, Bradley P.Folmer, Jacob C. W.Martin, James D.Zeller, MatthiasSommer, Roger

Inorganic chemistry (2015) 54, 3 1109-1119

a=6.413(3)Å   b=6.506(3)Å   c=14.211(6)Å

α=90.946(7)°   β=99.278(7)°   γ=95.741(7)°

H12O6Zn,Cl4Zn

H12O6Zn,Cl4Zn

Wilcox, Robert J.Losey, Bradley P.Folmer, Jacob C. W.Martin, James D.Zeller, MatthiasSommer, Roger

Inorganic chemistry (2015) 54, 3 1109-1119

a=6.477(3)Å   b=6.511(3)Å   c=14.291(7)Å

α=90.466(8)°   β=98.900(8)°   γ=95.575(8)°

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D12O6Zn,Cl4Zn

Wilcox, Robert J.Losey, Bradley P.Folmer, Jacob C. W.Martin, James D.Zeller, MatthiasSommer, Roger

Inorganic chemistry (2015) 54, 3 1109-1119

a=6.4753(22)Å   b=6.5117(20)Å   c=14.297(5)Å

α=90.568(29)°   β=99.035(32)°   γ=95.579(29)°