Structures by: Liu Y. C.
Total: 161
C38H44CuF2N6O7,6.33(H2O)
C38H44CuF2N6O7,6.33(H2O)
Metallomics : integrated biometal science (2020) 12, 12 2145-2160
a=12.151(7)Å b=13.362(8)Å c=16.110(10)Å
α=111.747(10)° β=92.860(10)° γ=113.294(9)°
C75H175Ag20O24P12PdS24
C75H175Ag20O24P12PdS24
Nanoscale (2019) 11, 31 14581-14586
a=30.0622(12)Å b=17.3584(7)Å c=29.8055(12)Å
α=90° β=109.4870(10)° γ=90°
C72H168Ag14O24P12Pd6S25
C72H168Ag14O24P12Pd6S25
Nanoscale (2019) 11, 31 14581-14586
a=14.5737(7)Å b=17.0670(8)Å c=17.2156(8)Å
α=118.2870(10)° β=92.2040(10)° γ=105.1650(10)°
C70H120Cu12N6O8S13
C70H120Cu12N6O8S13
Chemical science (2018) 9, 33 6785-6795
a=18.2449(13)Å b=23.2180(15)Å c=23.3841(17)Å
α=90° β=90° γ=90°
C85H102Cl0.7Cu12.3F30N6OPS12
C85H102Cl0.7Cu12.3F30N6OPS12
Chemical science (2018) 9, 33 6785-6795
a=21.8103(5)Å b=22.9770(6)Å c=22.0395(6)Å
α=90° β=90° γ=90°
C86H128BrCu12F6N6PS12
C86H128BrCu12F6N6PS12
Chemical science (2018) 9, 33 6785-6795
a=17.7551(15)Å b=19.6625(17)Å c=32.767(3)Å
α=85.8425(17)° β=85.6980(17)° γ=76.1094(16)°
C132H234Cl5Cu24F6N12O12PS24
C132H234Cl5Cu24F6N12O12PS24
Chemical science (2018) 9, 33 6785-6795
a=31.396(3)Å b=19.8294(17)Å c=33.181(3)Å
α=90° β=97.8261(17)° γ=90°
C75H175Ag19AuO24P12S24
C75H175Ag19AuO24P12S24
Nanoscale (2018) 10, 15 6855-6860
a=29.6903(7)Å b=17.3784(4)Å c=30.3868(6)Å
α=90° β=110.3727(6)° γ=90°
Copper(II) complex of anthracene-9-imidazoline hydrazone
C18H16Cl2CuN4,C2H6O
Metallomics : integrated biometal science (2015) 7, 7 1124-1136
a=11.3306(3)Å b=14.0417(3)Å c=13.3887(5)Å
α=90.00° β=106.842(4)° γ=90.00°
La0.65 Ca0.325 Mn O2.975
Ca0.325La0.65MnO2.975
Journal of Alloys Compd. (2000) 296, 33-38
a=5.492Å b=5.472Å c=7.734Å
α=90° β=90° γ=90°
(La0.625 Ca0.35) Mn O (O1.9 F0.05)
Ca0.35F0.05La0.625MnO2.9
Journal of Alloys Compd. (2000) 296, 33-38
a=5.49Å b=5.471Å c=7.731Å
α=90° β=90° γ=90°
(La0.6 Ca0.4) Mn O (O1.775 F0.175)
Ca0.4F0.175La0.6MnO2.775
Journal of Alloys Compd. (2000) 296, 33-38
a=5.463Å b=5.455Å c=7.713Å
α=90° β=90° γ=90°
(Nd0.67 Sr0.33) (Mn O3)
MnNd0.67O3Sr0.33
Journal of Solid State Chemistry (1999) 148, 236-241
a=5.465Å b=5.45Å c=7.697Å
α=90° β=90° γ=90°
(Nd0.653 Sr0.327 Ca0.02) Mn (O2.952 F0.035)
Ca0.02F0.035MnNd0.653O2.952Sr0.327
Journal of Solid State Chemistry (1999) 148, 236-241
a=5.459Å b=5.451Å c=7.695Å
α=90° β=90° γ=90°
(Nd0.588 Sr0.295 Ca0.118) Mn (O2.745 F0.225)
Ca0.118F0.225MnNd0.588O2.745Sr0.295
Journal of Solid State Chemistry (1999) 148, 236-241
a=5.447Å b=5.451Å c=7.684Å
α=90° β=90° γ=90°
(Nd0.553 Sr0.267 Ca0.20) Mn (O2.527 F0.355)
Ca0.2F0.355MnNd0.553O2.527Sr0.267
Journal of Solid State Chemistry (1999) 148, 236-241
a=5.433Å b=5.451Å c=7.671Å
α=90° β=90° γ=90°
CoPdCo2Pd(tpda)4Cl2
C61H46Cl4Co3N20Pd2
Dalton transactions (Cambridge, England : 2003) (2020) 49, 22 7299-7303
a=10.5246(4)Å b=10.5246(4)Å c=27.1616(11)Å
α=90° β=90° γ=90°
NiPtCo2Pd(tpda)4Cl2
C60.5H45Cl3Co2N20NiPdPt
Dalton transactions (Cambridge, England : 2003) (2020) 49, 22 7299-7303
a=10.5523(4)Å b=10.5523(4)Å c=27.0046(9)Å
α=90° β=90° γ=90°
CoPdCo3(tpda)4Cl2
C63H50Cl8Co4N20Pd
Dalton transactions (Cambridge, England : 2003) (2020) 49, 22 7299-7303
a=20.0796(2)Å b=15.9485(2)Å c=21.4276(3)Å
α=90° β=108.4299(7)° γ=90°
C40H32Ag2Cl2N14O6Rh2
C40H32Ag2Cl2N14O6Rh2
Dalton Transactions (2020)
a=14.8400(3)Å b=16.9282(4)Å c=16.3244(3)Å
α=90° β=96.1754(12)° γ=90°
C44H42Cl2CuN12ORh2
C44H42Cl2CuN12ORh2
Dalton Transactions (2020)
a=16.0407(8)Å b=15.7566(7)Å c=16.9543(8)Å
α=90° β=99.4159(12)° γ=90°
C42H36Cl6F6N12PRh2Ru
C42H36Cl6F6N12PRh2Ru
Dalton Transactions (2020)
a=11.4541(4)Å b=21.2908(6)Å c=20.3660(6)Å
α=90° β=93.0367(9)° γ=90°
C42H36Cl4N12Rh2
C42H36Cl4N12Rh2
Dalton Transactions (2020)
a=22.5312(13)Å b=9.2175(5)Å c=19.9260(12)Å
α=90° β=90° γ=90°
C44H42Cl2FeN12ORh2
C44H42Cl2FeN12ORh2
Dalton Transactions (2020)
a=16.0644(7)Å b=15.7547(7)Å c=16.9905(7)Å
α=90° β=98.7876(10)° γ=90°
C45H44Cl6N12ORh2Zn2
C45H44Cl6N12ORh2Zn2
Dalton Transactions (2020)
a=22.3384(15)Å b=11.8646(8)Å c=20.0326(14)Å
α=90° β=113.0623(14)° γ=90°
C44H42Cl2N12NiORh2
C44H42Cl2N12NiORh2
Dalton Transactions (2020)
a=15.9696(7)Å b=15.7425(8)Å c=16.9763(8)Å
α=90° β=98.6045(12)° γ=90°
C40H32N12Rh2
C40H32N12Rh2
Dalton Transactions (2020)
a=34.3409(4)Å b=34.3409(4)Å c=11.70360(10)Å
α=90° β=90° γ=90°
C44H42Cl2N12OPdRh2
C44H42Cl2N12OPdRh2
Dalton Transactions (2020)
a=16.1881(8)Å b=15.7720(8)Å c=16.9596(9)Å
α=90° β=100.6022(11)° γ=90°
C44H42CdCl2N12ORh2
C44H42CdCl2N12ORh2
Dalton Transactions (2020)
a=16.1176(7)Å b=15.8659(6)Å c=17.1805(7)Å
α=90° β=98.6243(9)° γ=90°
C44H42Cl2IrN12ORh2
C44H42Cl2IrN12ORh2
Dalton Transactions (2020)
a=16.0711(8)Å b=15.7264(8)Å c=16.9371(8)Å
α=90° β=99.5862(11)° γ=90°
C44H42Cl2CoN12ORh2
C44H42Cl2CoN12ORh2
Dalton Transactions (2020)
a=16.0245(2)Å b=15.7742(2)Å c=17.0123(3)Å
α=90° β=98.6876(9)° γ=90°
C48.5H51Cl2F6IrN12O2.5PRh2
C48.5H51Cl2F6IrN12O2.5PRh2
Dalton Transactions (2020)
a=51.972(2)Å b=11.8446(5)Å c=18.1292(8)Å
α=90° β=108.4130(10)° γ=90°
C44H42Cl2N12ORh2Ru
C44H42Cl2N12ORh2Ru
Dalton Transactions (2020)
a=16.0136(8)Å b=15.7306(7)Å c=16.9756(8)Å
α=90° β=98.7610(11)° γ=90°
C41.5H33.5AuCl6.5N12Rh2
C41.5H33.5AuCl6.5N12Rh2
Dalton Transactions (2020)
a=8.9453(2)Å b=34.2269(9)Å c=15.0001(4)Å
α=90° β=95.1383(9)° γ=90°
C19H27Cl2N2O4PPt
C19H27Cl2N2O4PPt
Chemical communications (Cambridge, England) (2019) 55, 87 13066-13069
a=9.3032(4)Å b=11.5641(4)Å c=12.6329(6)Å
α=111.392(4)° β=106.122(4)° γ=101.324(3)°
C16H18Cl3N2O3PPt
C16H18Cl3N2O3PPt
Chemical communications (Cambridge, England) (2019) 55, 87 13066-13069
a=9.6106(12)Å b=20.423(3)Å c=10.6731(13)Å
α=90.00° β=96.686(2)° γ=90.00°
C18H25Cl2N2O4PPt
C18H25Cl2N2O4PPt
Chemical communications (Cambridge, England) (2019) 55, 87 13066-13069
a=9.22386(14)Å b=13.26158(18)Å c=18.9212(3)Å
α=90° β=102.5961(15)° γ=90°
C18H23Cl4N2O3PPt
C18H23Cl4N2O3PPt
Chemical communications (Cambridge, England) (2019) 55, 87 13066-13069
a=8.366(3)Å b=11.425(4)Å c=14.150(5)Å
α=95.168(6)° β=106.359(6)° γ=106.779(6)°
C17H22Cl3N2O3PPt
C17H22Cl3N2O3PPt
Chemical communications (Cambridge, England) (2019) 55, 87 13066-13069
a=8.7652(3)Å b=14.5838(6)Å c=19.6786(10)Å
α=90.00° β=116.450(2)° γ=90.00°
C19H26Cl3N2O4PPt
C19H26Cl3N2O4PPt
Chemical communications (Cambridge, England) (2019) 55, 87 13066-13069
a=8.5496(10)Å b=11.5478(14)Å c=12.5966(15)Å
α=83.444(2)° β=85.190(2)° γ=71.014(2)°
C17H22Cl3N2O4PPt
C17H22Cl3N2O4PPt
Chemical communications (Cambridge, England) (2019) 55, 87 13066-13069
a=12.064(2)Å b=16.098(3)Å c=22.941(4)Å
α=90.00° β=90.00° γ=90.00°
C16H19Cl4N2O3PPt
C16H19Cl4N2O3PPt
Chemical communications (Cambridge, England) (2019) 55, 87 13066-13069
a=8.1410(12)Å b=17.253(3)Å c=16.187(3)Å
α=90.00° β=104.267(2)° γ=90.00°
C17H23Cl2N2O4PPt
C17H23Cl2N2O4PPt
Chemical communications (Cambridge, England) (2019) 55, 87 13066-13069
a=10.0411(5)Å b=14.3523(8)Å c=29.091(2)Å
α=90.00° β=90.00° γ=90.00°
[Rh(MQ)(DMSO)2Cl2]
C14H20Cl2NO3RhS2
MedChemComm (2017) 8, 1 184-190
a=8.9953(9)Å b=15.618(2)Å c=13.4715(15)Å
α=90° β=103.827(12)° γ=90°
Ru5
2(C27H23Cl2N3ORuS),2(C2H6OS),H2O,0.5(CO)
MedChemComm (2018) 9, 3 525-533
a=11.5669(4)Å b=22.0229(6)Å c=24.9620(7)Å
α=90.00° β=98.749(3)° γ=90.00°
C112H128Cl12N4O10
C112H128Cl12N4O10
Chemical Communications (2017)
a=36.231(3)Å b=14.2891(9)Å c=26.170(3)Å
α=90° β=109.636(11)° γ=90°
Diphenylazobridged bistriazolylbiscalix[4]arene
C106H124N8O8
Chemical Communications (2017)
a=36.5263(18)Å b=14.3181(3)Å c=26.3568(11)Å
α=90° β=110.445(5)° γ=90°
C19H14Cl2N4Pt,C2H6OS
C19H14Cl2N4Pt,C2H6OS
New Journal of Chemistry (2019)
a=9.1092(3)Å b=9.8959(4)Å c=13.2673(5)Å
α=102.199(3)° β=103.963(3)° γ=98.146(3)°
C30H16Cl2CuN4O4
C30H16Cl2CuN4O4
New Journal of Chemistry (2018) 42, 18 15479
a=7.8422(3)Å b=8.7783(3)Å c=9.4903(3)Å
α=90.286(2)° β=104.150(2)° γ=97.796(2)°
C30H14Br2Cl2CuN4O4
C30H14Br2Cl2CuN4O4
New Journal of Chemistry (2018) 42, 18 15479
a=10.8609(12)Å b=13.7631(15)Å c=18.269(2)Å
α=90.00° β=97.096(5)° γ=90.00°
C26H24FIN4O2S
C26H24FIN4O2S
New Journal of Chemistry (2019) 43, 37 14739
a=16.6016(4)Å b=24.2609(6)Å c=6.07906(11)Å
α=90° β=90° γ=90°
C22H30CoN4O7
C22H30CoN4O7
New Journal of Chemistry (2000) 24, 10 759
a=9.603(2)Å b=15.914(3)Å c=15.723(3)Å
α=90.00° β=97.17(3)° γ=90.00°
C18H28Co0.5N5O8
C18H28Co0.5N5O8
New Journal of Chemistry (2000) 24, 10 759
a=15.290(3)Å b=9.609(2)Å c=16.956(3)Å
α=90.00° β=97.93(3)° γ=90.00°
C27H18N3O3Rh,CH4O
C27H18N3O3Rh,CH4O
New J. Chem. (2016) 40, 7 6005
a=10.93140(10)Å b=13.1412(2)Å c=18.7929(3)Å
α=90.00° β=117.0280(10)° γ=90.00°
C19H14Br2ClN2O3Rh,O
C19H14Br2ClN2O3Rh,O
New J. Chem. (2016) 40, 7 6005
a=8.0116(6)Å b=11.7397(10)Å c=12.2484(7)Å
α=78.326(6)° β=88.221(5)° γ=89.460(6)°
2-[9-(10'-methyl-9',10'-dihydro-acridin-9'-yl)-9H-fluoren-9-yl]-malononitrile
C30H21N3
Chemical Communications (2002) 8 882
a=9.7538(5)Å b=9.4805(5)Å c=24.4914(13)Å
α=90.00° β=95.0710(10)° γ=90.00°
Fe(III) complex 1
C20H12Cl5FeN2O2
Med. Chem. Commun. (2017) 8, 3 633
a=10.5841(2)Å b=29.3409(6)Å c=22.5449(6)Å
α=90.00° β=114.077(2)° γ=90.00°
C11H10ClI2NO2PtS
C11H10ClI2NO2PtS
Med. Chem. Commun. (2016) 7, 9 1802
a=12.2175(4)Å b=11.5867(4)Å c=45.0661(13)Å
α=90° β=90° γ=90°
C11H12ClNO2PtS
C11H12ClNO2PtS
Med. Chem. Commun. (2016) 7, 9 1802
a=7.4733(2)Å b=17.1260(6)Å c=9.9156(3)Å
α=90.00° β=90.00° γ=90.00°
2(C10H9BrNO2Zn0.5)
2(C10H9BrNO2Zn0.5)
Med. Chem. Commun. (2015) 6, 12 2224
a=5.06412(19)Å b=18.1609(12)Å c=11.4569(4)Å
α=90.00° β=97.646(4)° γ=90.00°
2(C14H10BrCo0.5N2O),2(O1)
2(C14H10BrCo0.5N2O),2(O1)
Med. Chem. Commun. (2016) 7, 5 806
a=14.6162(11)Å b=16.3774(8)Å c=12.5927(11)Å
α=90.00° β=90.00° γ=90.00°
C28H20CoN6O6,2(C2H2O)
C28H20CoN6O6,2(C2H2O)
Med. Chem. Commun. (2016) 7, 5 806
a=17.880(4)Å b=13.110(3)Å c=14.440(3)Å
α=90.00° β=112.47(3)° γ=90.00°
C28H24CoN6O2,0.13(C16O16),0.5(C4),0.25(O)
C28H24CoN6O2,0.13(C16O16),0.5(C4),0.25(O)
Med. Chem. Commun. (2016) 7, 5 806
a=17.9171(8)Å b=17.9171(8)Å c=17.1784(8)Å
α=90.00° β=90.00° γ=90.00°
C50H48MnN8,2(ClO4)
C50H48MnN8,2(ClO4)
Med. Chem. Commun. (2016) 7, 6 1132
a=19.0394(4)Å b=15.1400(4)Å c=17.3328(5)Å
α=90° β=108.185(2)° γ=90°
C34H18Cl4N2O6Zn2
C34H18Cl4N2O6Zn2
Dalton Transactions (2009) 48 10813-10823
a=8.3086(8)Å b=9.2160(9)Å c=10.1726(10)Å
α=99.3960(10)° β=100.2240(10)° γ=93.1210(10)°
C34H18Cl2MnN2O6
C34H18Cl2MnN2O6
Dalton Transactions (2009) 48 10813-10823
a=15.256(3)Å b=14.178(3)Å c=25.483(6)Å
α=90.00° β=90.00° γ=90.00°
C34H18Cl2FeN2O6
C34H18Cl2FeN2O6
Dalton Transactions (2009) 48 10813-10823
a=15.1902(16)Å b=14.1042(16)Å c=25.189(2)Å
α=90.00° β=90.00° γ=90.00°
C19H15Cl2NO4PtS
C19H15Cl2NO4PtS
Dalton Transactions (2009) 2 262-272
a=8.4271(2)Å b=10.7087(3)Å c=11.8244(5)Å
α=109.749(2)° β=102.533(2)° γ=100.9460(10)°
C21H24Cl2NO6.5RuS2
C21H24Cl2NO6.5RuS2
Dalton Transactions (2009) 2 262-272
a=9.2751(2)Å b=22.0127(5)Å c=12.2893(2)Å
α=90.00° β=106.0980(10)° γ=90.00°
C19H9NO3,2(HCl3)
C19H9NO3,2(HCl3)
Dalton Transactions (2009) 2 262-272
a=26.529(5)Å b=12.4079(18)Å c=13.862(2)Å
α=90.00° β=114.135(4)° γ=90.00°
C21H21CuN3O9
C21H21CuN3O9
Dalton Transactions (2009) 48 10824-10833
a=8.684(8)Å b=10.357(9)Å c=13.036(11)Å
α=72.472(13)° β=83.105(13)° γ=88.979(13)°
C34H22CoN2O8,C38H30CoN2O8,4(ClO4)
C34H22CoN2O8,C38H30CoN2O8,4(ClO4)
Dalton Transactions (2009) 48 10813-10823
a=11.226(3)Å b=11.564(3)Å c=14.772(3)Å
α=91.866(5)° β=96.362(4)° γ=115.633(6)°
CoPtCo2Pd(tpda)4Cl2
C60.5H45Cl3Co3N20PdPt
Dalton transactions (Cambridge, England : 2003) (2020) 49, 22 7299-7303
a=10.5398(6)Å b=10.5398(6)Å c=27.1120(14)Å
α=90° β=90° γ=90°
C44H42Cl2Co2N12OPt
C44H42Cl2Co2N12OPt
Dalton transactions (Cambridge, England : 2003) (2020) 49, 22 7299-7303
a=16.0911(2)Å b=15.7779(2)Å c=17.0753(2)Å
α=90° β=97.7811(8)° γ=90°
CoPtCo3(tpda)4Cl2
C63H50Cl8Co4N20Pt
Dalton transactions (Cambridge, England : 2003) (2020) 49, 22 7299-7303
a=20.0753(3)Å b=15.9501(2)Å c=21.4567(3)Å
α=90° β=108.4468(5)° γ=90°
C44H42Cl2MnN12ORh2
C44H42Cl2MnN12ORh2
Dalton Transactions (2020)
a=16.0445(8)Å b=15.7818(8)Å c=17.0632(9)Å
α=90° β=98.5713(12)° γ=90°
C40H32Cl2Cu2N12Rh2
C40H32Cl2Cu2N12Rh2
Dalton Transactions (2020)
a=14.4313(2)Å b=16.7886(2)Å c=16.4651(2)Å
α=90° β=96.6949(6)° γ=90°
C42H35Cl7F6N12NiPRh2
C42H35Cl7F6N12NiPRh2
Dalton Transactions (2020)
a=11.5346(8)Å b=21.3695(13)Å c=20.2834(13)Å
α=90° β=92.693(2)° γ=90°
C44H42Cl2N12OPtRh2
C44H42Cl2N12OPtRh2
Dalton Transactions (2020)
a=16.2210(10)Å b=15.8110(10)Å c=16.9816(10)Å
α=90° β=100.7660(10)° γ=90°
C20H14Cl2N4OPt,C2H6OS
C20H14Cl2N4OPt,C2H6OS
New Journal of Chemistry (2019)
a=9.161(3)Å b=9.961(3)Å c=13.165(4)Å
α=101.623(4)° β=103.647(4)° γ=97.629(4)°
C25H24N6O6Zn
C25H24N6O6Zn
Med. Chem. Commun. (2016) 7, 6 1132
a=11.9747(9)Å b=15.8152(6)Å c=14.1457(10)Å
α=90° β=114.424(9)° γ=90°
C22H18CuO8
C22H18CuO8
Dalton Transactions (2009) 48 10824-10833
a=21.576(4)Å b=10.0549(18)Å c=9.3266(17)Å
α=90.00° β=109.319(3)° γ=90.00°
C12H14N5O5SZn,NO3
C12H14N5O5SZn,NO3
RSC Adv. (2017) 7, 29 17923
a=7.633(15)Å b=27.01(5)Å c=10.461(16)Å
α=90.00° β=125.38(10)° γ=90.00°
C12H14CuN5O5S,NO3,H2O
C12H14CuN5O5S,NO3,H2O
RSC Adv. (2017) 7, 29 17923
a=8.5965(8)Å b=10.0815(9)Å c=12.1404(14)Å
α=110.051(2)° β=95.7270(10)° γ=90.1480(10)°
C15H14CuN2O7S
C15H14CuN2O7S
RSC Adv. (2015)
a=7.36740(10)Å b=18.0273(3)Å c=23.5080(4)Å
α=90.00° β=90.00° γ=90.00°
C16H12ClCuN2O8
C16H12ClCuN2O8
RSC Adv. (2015)
a=7.8720(4)Å b=17.1458(5)Å c=12.8986(5)Å
α=90.00° β=102.085(5)° γ=90.00°
C41H34Cl4CoN12Ru2
C41H34Cl4CoN12Ru2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=13.0347(3)Å b=14.1300(3)Å c=11.2290(3)Å
α=90° β=90° γ=90°
C42H35Cl7CoF6N12PRu2
C42H35Cl7CoF6N12PRu2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=11.5837(8)Å b=21.4250(18)Å c=20.3563(17)Å
α=90° β=92.830(3)° γ=90°
C42.25H36.5Cl6.5F6N12PRhRu2
C42.25H36.5Cl6.5F6N12PRhRu2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=11.4470(4)Å b=21.2891(8)Å c=20.5063(8)Å
α=90° β=93.0985(12)° γ=90°
C43H38Cl8F6N12PPdRu2
C43H38Cl8F6N12PPdRu2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=12.3353(5)Å b=10.3177(4)Å c=20.5839(8)Å
α=90° β=92.4271(10)° γ=90°
C40H32ClN12Ru2
C40H32ClN12Ru2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=9.7288(4)Å b=18.8437(7)Å c=20.4662(8)Å
α=90° β=99.8469(12)° γ=90°
C42H36Cl7N12O4Ru2Zn
C42H36Cl7N12O4Ru2Zn
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=11.4703(3)Å b=21.0727(6)Å c=20.3128(7)Å
α=90° β=93.7692(12)° γ=90°
C42.79H37.19CdCl7N12.4O4Ru2
C42.79H37.19CdCl7N12.4O4Ru2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=11.57280(10)Å b=21.0516(2)Å c=20.4882(2)Å
α=90° β=94.5106(7)° γ=90°
C42H36Cl6F6IrN12PRu2
C42H36Cl6F6IrN12PRu2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=11.4236(3)Å b=21.3206(6)Å c=20.5318(6)Å
α=90° β=92.9580(9)° γ=90°
C43.5H39Cl4MnN12O5Ru2
C43.5H39Cl4MnN12O5Ru2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=11.3404(3)Å b=21.4694(5)Å c=19.9024(4)Å
α=90° β=93.7271(12)° γ=90°
C40H32ClN12PdRu2,C3H6O,2(F6P),H2O,O,0.5(C4H10O)
C40H32ClN12PdRu2,C3H6O,2(F6P),H2O,O,0.5(C4H10O)
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=9.8959(3)Å b=17.3019(5)Å c=17.8514(5)Å
α=98.5142(14)° β=100.5271(15)° γ=98.7123(14)°
C43.5H40Cl5F6FeN12OPRu2
C43.5H40Cl5F6FeN12OPRu2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 5 1422-1434
a=11.5723(4)Å b=21.3821(7)Å c=20.4312(7)Å
α=90° β=92.9440(11)° γ=90°
C52H44Fe2N8O4S4
C52H44Fe2N8O4S4
Dalton transactions (Cambridge, England : 2003) (2019) 48, 2 379-386
a=11.1144(6)Å b=15.7599(7)Å c=14.9052(7)Å
α=90.00° β=105.382(3)° γ=90.00°
C26H22N4O2S2
C26H22N4O2S2
Dalton transactions (Cambridge, England : 2003) (2019) 48, 2 379-386
a=7.838(2)Å b=19.043(6)Å c=15.788(5)Å
α=90.00° β=96.21(2)° γ=90.00°
C34H42FeN5O3S2
C34H42FeN5O3S2
Dalton transactions (Cambridge, England : 2003) (2019) 48, 2 379-386
a=15.879(3)Å b=12.862(3)Å c=16.892(3)Å
α=90.00° β=102.985(14)° γ=90.00°