Structures by: Lollar C.
Total: 22
C37H43Cu2I2N5O2S3
C37H43Cu2I2N5O2S3
Materials Chemistry Frontiers (2017) 1, 9 1764
a=9.102(3)Å b=14.511(4)Å c=17.160(5)Å
α=66.114(3)° β=88.537(4)° γ=80.515(4)°
C30H34Cu2I2N4OS3
C30H34Cu2I2N4OS3
Materials Chemistry Frontiers (2017) 1, 9 1764
a=9.174(6)Å b=14.442(10)Å c=17.023(11)Å
α=113.404(8)° β=90.013(8)° γ=99.203(8)°
C31H33Cu2I2N5S3
C31H33Cu2I2N5S3
Materials Chemistry Frontiers (2017) 1, 9 1764
a=8.962(3)Å b=14.515(4)Å c=16.577(5)Å
α=112.653(3)° β=91.205(4)° γ=98.338(3)°
C31H39Cu2I2N3O2S5
C31H39Cu2I2N3O2S5
Materials Chemistry Frontiers (2017) 1, 9 1764
a=9.353(6)Å b=14.189(9)Å c=17.257(10)Å
α=113.336(7)° β=94.402(7)° γ=100.137(7)°
C35H45Cu2I2N5O2S3
C35H45Cu2I2N5O2S3
Materials Chemistry Frontiers (2017) 1, 9 1764
a=9.252(4)Å b=14.347(7)Å c=17.158(8)Å
α=113.914(6)° β=91.450(6)° γ=99.705(5)°
C34H27Cu2I2N3OS3
C34H27Cu2I2N3OS3
Materials Chemistry Frontiers (2017) 1, 9 1764
a=9.4203(6)Å b=14.3226(9)Å c=17.3309(12)Å
α=65.977(3)° β=77.856(3)° γ=79.467(3)°
C32H48O44Ti8Zr2,4(C4H6N2)
C32H48O44Ti8Zr2,4(C4H6N2)
ACS central science (2018) 4, 1 105-111
a=24.260(4)Å b=24.260(4)Å c=24.260(4)Å
α=90° β=90° γ=90°
C48H80O44Ti8Zr2
C48H80O44Ti8Zr2
ACS central science (2018) 4, 1 105-111
a=12.064(3)Å b=13.543(3)Å c=13.806(3)Å
α=104.331(3)° β=109.519(3)° γ=110.620(3)°
2(C112H80O44Ti8Zr2)
2(C112H80O44Ti8Zr2)
ACS central science (2018) 4, 1 105-111
a=14.896(4)Å b=24.070(6)Å c=15.304(4)Å
α=90° β=91.287(4)° γ=90°
C128H112O44Ti8Zr2,2(C3H7NO)
C128H112O44Ti8Zr2,2(C3H7NO)
ACS central science (2018) 4, 1 105-111
a=32.890(7)Å b=32.890(7)Å c=73.485(15)Å
α=90° β=90° γ=120°
C176H208O44Ti8Zr2
C176H208O44Ti8Zr2
ACS central science (2018) 4, 1 105-111
a=15.818(12)Å b=35.48(3)Å c=18.356(14)Å
α=90° β=108.901(12)° γ=90°
C40H30O16Zr3
C40H30O16Zr3
Journal of the American Chemical Society (2017)
a=19.097(3)Å b=32.141(4)Å c=35.122(5)Å
α=90° β=90° γ=90°
C40H28O18Zr3
C40H28O18Zr3
Journal of the American Chemical Society (2017)
a=18.018(3)Å b=33.1022(12)Å c=35.0246(11)Å
α=90° β=90° γ=90°
C40H30O18Zr3
C40H30O18Zr3
Journal of the American Chemical Society (2017)
a=18.7781(10)Å b=35.2745(8)Å c=16.0212(3)Å
α=90° β=90° γ=90°
C80H64N4O32Zr6
C80H64N4O32Zr6
Journal of the American Chemical Society (2017)
a=35.1569(4)Å b=20.1235(6)Å c=15.6584(2)Å
α=90° β=90° γ=90°
C42H34O18Zr3
C42H34O18Zr3
Journal of the American Chemical Society (2017)
a=35.2146(9)Å b=19.7752(16)Å c=15.7268(6)Å
α=90° β=90° γ=90°
C40H30O18Zr3
C40H30O18Zr3
Journal of the American Chemical Society (2017)
a=40.962(17)Å b=40.962Å c=15.438(6)Å
α=90° β=90° γ=120°
C40H32N2O16Zr3
C40H32N2O16Zr3
Journal of the American Chemical Society (2017)
a=41.0545(9)Å b=41.0545(9)Å c=14.6865(3)Å
α=90° β=90° γ=120°
C50H46O18Zr3
C50H46O18Zr3
Journal of the American Chemical Society (2017)
a=40.2157(14)Å b=40.2157(14)Å c=15.4827(6)Å
α=90° β=90° γ=120°
C40H30NO16Zr3
C40H30NO16Zr3
Journal of the American Chemical Society (2017)
a=16.6619(14)Å b=32.7171(9)Å c=35.7812(8)Å
α=90° β=90° γ=90°
C42H28O16Zr3
C42H28O16Zr3
Journal of the American Chemical Society (2017)
a=40.313(15)Å b=40.313Å c=16.344(7)Å
α=90° β=90° γ=120°
C44.67H44O16.67Zr3
C44.67H44O16.67Zr3
Journal of the American Chemical Society (2017)
a=40.4113(11)Å b=40.4113(11)Å c=15.6898(6)Å
α=90° β=90° γ=120°