Structures by: Thurston J. H.

Total: 39

Bi2(Hsal)6(bipy)2(tol)2

Bi2(Hsal)6(bipy)2(tol)2

Thurston, John H.Marlier, Elodie M.Whitmire, Kenton H.

Chemical Communications (2002) 23 2834

a=10.830(2)Å   b=12.489(3)Å   c=14.319(3)Å

α=87.22(3)°   β=81.65(3)°   γ=64.33(3)°

Bi2(sal)2(salH)2(1,10phenanthroline)2(tol)2

Bi2(sal)2(salH)2(1,10phenanthroline)2(tol)2

Thurston, John H.Marlier, Elodie M.Whitmire, Kenton H.

Chemical Communications (2002) 23 2834

a=10.022(2)Å   b=24.530(5)Å   c=12.195(3)Å

α=90.00°   β=107.167(4)°   γ=90.00°

(Bi5O12N12C66H48)3,3(ClO4),4(NC2H3)

(Bi5O12N12C66H48)3,3(ClO4),4(NC2H3)

Thurston, John H.Dougherty, Michael J.Swenson, Dale C.Messerle, Louis

Dalton Transactions (2008) 38 5146-5148

a=20.306(3)Å   b=20.306(3)Å   c=34.684(4)Å

α=90.00°   β=90.00°   γ=120.00°

Bi9Cl5H12O37

Bi9Cl5H12O37

J.H. ThurstonD.C. SwensonL. Messerle

Chemical Communications (2005)

a=9.983(2)Å   b=16.774(3)Å   c=10.608(2)Å

α=90.00°   β=92.85(3)°   γ=90.00°

C37H30BiCuN2O11

C37H30BiCuN2O11

Thurston, John H.Ould-Ely, TeyebTrahan, DanielWhitmire, Kenton H.

Chemistry of Materials (2003)

a=10.240(2)Å   b=13.279(3)Å   c=13.705(3)Å

α=93.17(3)°   β=108.60(3)°   γ=106.38(3)°

C19H19ClO5S

C19H19ClO5S

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=7.4800(15)Å   b=10.651(2)Å   c=12.722(3)Å

α=66.52(3)°   β=83.04(3)°   γ=77.92(3)°

C20H18ClO5S

C20H18ClO5S

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=11.580(2)Å   b=13.189(3)Å   c=13.743(3)Å

α=90.00°   β=112.42(3)°   γ=90.00°

C18H18ClNO4S2

C18H18ClNO4S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=7.6869(11)Å   b=11.4845(16)Å   c=12.1644(17)Å

α=69.264(2)°   β=85.923(2)°   γ=80.198(2)°

C17H17ClO4S2

C17H17ClO4S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=8.781(2)Å   b=10.434(2)Å   c=19.438(5)Å

α=90.00°   β=98.524(5)°   γ=90.00°

C32H26Cl2NO10S2

C32H26Cl2NO10S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=9.0344(18)Å   b=16.368(3)Å   c=21.868(4)Å

α=90.00°   β=100.84(3)°   γ=90.00°

C31H28Cl2O10S2

C31H28Cl2O10S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=14.198(3)Å   b=13.998(3)Å   c=15.977(3)Å

α=90.00°   β=108.00(3)°   γ=90.00°

C29H24Cl1.97O9.89S2

C29H24Cl1.97O9.89S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=16.803(3)Å   b=13.651(3)Å   c=12.880(3)Å

α=90.00°   β=105.57(3)°   γ=90.00°

C18H19Cl2NO8S2

C18H19Cl2NO8S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=14.216(2)Å   b=15.657(2)Å   c=20.419(3)Å

α=90.00°   β=90.00°   γ=90.00°

C34H31Cl2NO10.31S2

C34H31Cl2NO10.31S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=9.3351(19)Å   b=16.983(3)Å   c=21.505(4)Å

α=90.00°   β=99.85(3)°   γ=90.00°

C18H20Cl2O8S2

C18H20Cl2O8S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=9.7296(11)Å   b=22.347(2)Å   c=10.4119(11)Å

α=90.00°   β=99.920(2)°   γ=90.00°

C22H28Cl2O8S2

C22H28Cl2O8S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=8.744(3)Å   b=9.346(3)Å   c=15.340(6)Å

α=88.599(6)°   β=85.784(6)°   γ=89.797(7)°

C22H26Cl2O8S2

C22H26Cl2O8S2

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=9.431(3)Å   b=16.610(5)Å   c=16.074(4)Å

α=90.00°   β=92.771(6)°   γ=90.00°

C18H17ClO5S

C18H17ClO5S

Henry J. ShineBingjun ZhaoDing-Quan QianJohn N. MarxIlse Y. Guzmán-JiménezJohn H. ThurstonT. Ould-ElyKenton H. Whitmire

Journal of Organic Chemistry (2003) 68, 8910-8917

a=8.5250(17)Å   b=9.4980(19)Å   c=10.890(2)Å

α=100.57(3)°   β=90.37(3)°   γ=95.32(3)°

C58H55BiCl4O26Ta4

C58H55BiCl4O26Ta4

Vitalie StavilaJohn H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2009) 48, 6945-6951

a=26.746(5)Å   b=12.872(3)Å   c=19.769(4)Å

α=90.00°   β=94.00(3)°   γ=90.00°

C66H68Bi2O24Ta2

C66H68Bi2O24Ta2

Vitalie StavilaJohn H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2009) 48, 6945-6951

a=13.121(3)Å   b=19.459(4)Å   c=14.121(3)Å

α=90.00°   β=103.99(3)°   γ=90.00°

C28H24BiNbO8

C28H24BiNbO8

Vitalie StavilaJohn H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2009) 48, 6945-6951

a=11.9757(8)Å   b=18.3032(10)Å   c=13.0747(8)Å

α=90.00°   β=90.225(2)°   γ=90.00°

C32H34BiNbO9

C32H34BiNbO9

Vitalie StavilaJohn H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2009) 48, 6945-6951

a=10.648(2)Å   b=25.083(5)Å   c=12.195(2)Å

α=90.00°   β=92.97(3)°   γ=90.00°

C22H24CuN2O9Pb

C22H24CuN2O9Pb

John H. ThurstonChristopher G.-Z. TangDaniel W. TrahanKenton H. Whitmire

Inorganic Chemistry (2004) 43, 2708-2713

a=9.990(2)Å   b=10.759(2)Å   c=12.576(3)Å

α=110.96(3)°   β=103.97(3)°   γ=97.73(3)°

C50H46Cu2N4O14Pb

C50H46Cu2N4O14Pb

John H. ThurstonChristopher G.-Z. TangDaniel W. TrahanKenton H. Whitmire

Inorganic Chemistry (2004) 43, 2708-2713

a=10.480(2)Å   b=10.515(2)Å   c=11.988(2)Å

α=71.50(3)°   β=64.50(3)°   γ=79.52(3)°

C36H36Cu2N5O12Pb

C36H36Cu2N5O12Pb

John H. ThurstonChristopher G.-Z. TangDaniel W. TrahanKenton H. Whitmire

Inorganic Chemistry (2004) 43, 2708-2713

a=22.868(5)Å   b=15.543(3)Å   c=23.434(5)Å

α=90.00°   β=90.00°   γ=90.00°

C38H39N4Ni2O11.7Pb

C38H39N4Ni2O11.7Pb

John H. ThurstonChristopher G.-Z. TangDaniel W. TrahanKenton H. Whitmire

Inorganic Chemistry (2004) 43, 2708-2713

a=18.688(4)Å   b=26.355(5)Å   c=13.377(3)Å

α=90.00°   β=133.01(3)°   γ=90.00°

C57H51AlBi2O24

C57H51AlBi2O24

John H. ThurstonDaniel TrahanTeyeb Ould-ElyKenton H. Whitmire

Inorganic Chemistry (2004) 43, 3299-3305

a=19.391(3)Å   b=19.391(3)Å   c=26.708(5)Å

α=90.00°   β=90.00°   γ=120.00°

C81H66Bi2Mg0Nb2O28

C81H66Bi2Mg0Nb2O28

John H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2003) 42, 2014-2023

a=23.038(5)Å   b=15.004(3)Å   c=23.183(5)Å

α=90.00°   β=100.18(3)°   γ=90.00°

C61H57BiO29Ta4

C61H57BiO29Ta4

John H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2003) 42, 2014-2023

a=15.262(3)Å   b=21.886(4)Å   c=21.315(4)Å

α=90.00°   β=108.33(3)°   γ=90.00°

C81H68Bi2O28Ta2

C81H68Bi2O28Ta2

John H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2003) 42, 2014-2023

a=23.095(5)Å   b=15.026(3)Å   c=23.222(5)Å

α=90.00°   β=100.32(3)°   γ=90.00°

C61H58BiNb4O29

C61H58BiNb4O29

John H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2003) 42, 2014-2023

a=15.305(3)Å   b=21.802(4)Å   c=21.278(4)Å

α=90.00°   β=108.66(3)°   γ=90.00°

C73H48Bi2Cl6O30Ti3

C73H48Bi2Cl6O30Ti3

John H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2002) 41, 4194-4205

a=13.320(3)Å   b=13.654(3)Å   c=23.377(5)Å

α=82.98(3)°   β=83.68(3)°   γ=66.35(3)°

C68H64Bi2O28Ta2

C68H64Bi2O28Ta2

John H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2002) 41, 4194-4205

a=11.361(2)Å   b=13.090(3)Å   c=13.675(3)Å

α=66.06(3)°   β=71.89(3)°   γ=84.27(3)°

Bi2Nb2(sal)4(Hsal)4(OiPr)4

Bi2Nb2(sal)4(Hsal)4(OiPr)4

John H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2002) 41, 4194-4205

a=11.231(2)Å   b=12.997(3)Å   c=13.615(3)Å

α=65.83(3)°   β=72.49(3)°   γ=85.07(3)°

C80H52Bi2O35Ti4

C80H52Bi2O35Ti4

John H. ThurstonKenton H. Whitmire

Inorganic Chemistry (2002) 41, 4194-4205

a=15.143(3)Å   b=33.020(7)Å   c=19.147(4)Å

α=90.00°   β=108.75(3)°   γ=90.00°

C94H96Bi4O38Ti4

C94H96Bi4O38Ti4

John H. ThurstonArvind KumarCristina HofmannKenton H. Whitmire

Inorganic Chemistry (2004) 43, 8427-8436

a=13.551(3)Å   b=14.397(3)Å   c=16.376(3)Å

α=66.70(3)°   β=76.71(3)°   γ=79.71(3)°

C63H73BiO25Ti4

C63H73BiO25Ti4

John H. ThurstonArvind KumarCristina HofmannKenton H. Whitmire

Inorganic Chemistry (2004) 43, 8427-8436

a=12.130(2)Å   b=15.073(3)Å   c=23.789(5)Å

α=98.62(3)°   β=101.38(3)°   γ=113.55(3)°

C188H192Bi8O76Ti8

C188H192Bi8O76Ti8

John H. ThurstonArvind KumarCristina HofmannKenton H. Whitmire

Inorganic Chemistry (2004) 43, 8427-8436

a=24.115(5)Å   b=29.755(6)Å   c=35.369(7)Å

α=90.00°   β=108.59(3)°   γ=90.00°

C21H21Bi

C21H21Bi

Stavila, VitalieThurston, John H.Prieto-Centurión, DaríoWhitmire, Kenton H.

Organometallics (2007) 26, 27 6864

a=6.4272(13)Å   b=10.630(2)Å   c=14.087(3)Å

α=87.57(3)°   β=89.38(3)°   γ=73.17(3)°