Structures by: Zhang W. W.
Total: 67
NJU-Bai61p
C5H4Cu2I2N2O2
Chemical Science (2020)
a=13.4414(12)Å b=10.3399(9)Å c=15.1736(14)Å
α=90° β=106.9640(10)° γ=90°
NJU-Bai61
C33H45Cu13I11N12O7
Chemical Science (2020)
a=25.1585(14)Å b=25.1585(14)Å c=25.1585(14)Å
α=90° β=90° γ=90°
C39H32F6IrN3O0S2
C39H32F6IrN3O0S2
Materials Chemistry Frontiers (2019) 3, 5 860
a=26.026(4)Å b=12.9400(14)Å c=22.386(3)Å
α=90° β=97.214(4)° γ=90°
C53H42F6IrN3S2
C53H42F6IrN3S2
Materials Chemistry Frontiers (2019) 3, 5 860
a=11.30(2)Å b=15.22(3)Å c=16.31(3)Å
α=79.22(3)° β=79.11(3)° γ=82.46(3)°
C45H28F6IrN3S2
C45H28F6IrN3S2
Materials Chemistry Frontiers (2019) 3, 5 860
a=15.5226(15)Å b=12.6925(12)Å c=20.610(2)Å
α=90° β=97.559(2)° γ=90°
C43H24F6IrN5S2
C43H24F6IrN5S2
Chemical Science (2019)
a=8.4135(5)Å b=22.5714(13)Å c=19.5667(12)Å
α=90° β=95.3680(10)° γ=90°
C37H30F6IrN5S2
C37H30F6IrN5S2
Chemical Science (2019)
a=13.9038(13)Å b=34.924(3)Å c=15.0724(15)Å
α=90° β=92.347(2)° γ=90°
C26H17ClO1.5P
C26H17ClO1.5P
Organic letters (2017) 19, 17 4512-4515
a=14.084(6)Å b=14.084(6)Å c=39.70(3)Å
α=90.00° β=90.00° γ=90.00°
C33H24NO2P
C33H24NO2P
Organic letters (2017) 19, 17 4512-4515
a=15.2424(15)Å b=18.1764(16)Å c=23.330(2)Å
α=90.00° β=90.1420(10)° γ=90.00°
C18H6InN0O8
C18H6InN0O8
Dalton transactions (Cambridge, England : 2003) (2019) 48, 32 12088-12095
a=9.9618(3)Å b=9.9618(3)Å c=11.5931(7)Å
α=90° β=90° γ=90°
C33H26F12IrN3S2
C33H26F12IrN3S2
Journal of Materials Chemistry C (2019) 7, 24 7273
a=11.502(3)Å b=18.947(4)Å c=16.970(4)Å
α=90° β=98.420(4)° γ=90°
C31H24F12IrN5S2
C31H24F12IrN5S2
Journal of Materials Chemistry C (2019) 7, 24 7273
a=17.763(2)Å b=11.7754(14)Å c=17.580(2)Å
α=90° β=103.941(2)° γ=90°
C31H28F6IrN3S2
C31H28F6IrN3S2
Journal of Materials Chemistry C (2019) 7, 24 7273
a=15.7090(7)Å b=19.7575(9)Å c=21.8169(9)Å
α=90° β=90° γ=90°
C51H40F6IrN5S2
C51H40F6IrN5S2
Journal of Materials Chemistry C (2019) 7, 13 3862
a=45.967(7)Å b=18.658(3)Å c=21.437(3)Å
α=90° β=91.993(2)° γ=90°
C51H41F6IrN5S2
C51H41F6IrN5S2
Journal of Materials Chemistry C (2019) 7, 13 3862
a=8.2104(6)Å b=14.8349(11)Å c=20.6198(15)Å
α=74.7250(10)° β=79.5860(10)° γ=77.3990(10)°
C46H32F6IrN5P2S2
C46H32F6IrN5P2S2
Journal of Materials Chemistry C (2019) 7, 9 2570
a=11.5684(6)Å b=16.2297(9)Å c=23.9520(14)Å
α=90° β=101.5870(10)° γ=90°
C54H36F6IrN5P2S2
C54H36F6IrN5P2S2
Journal of Materials Chemistry C (2019) 7, 9 2570
a=20.775(3)Å b=22.658(4)Å c=10.1503(16)Å
α=90° β=90° γ=90°
C44H38Ba3O20S4
C44H38Ba3O20S4
Journal of Materials Chemistry C (2018) 6, 26 7030
a=10.4838(12)Å b=11.4338(13)Å c=13.0145(15)Å
α=65.383(2)° β=67.374(2)° γ=71.286(3)°
C24H22CaN2O10
C24H22CaN2O10
Journal of Materials Chemistry C (2018) 6, 26 7030
a=11.4325(13)Å b=23.171(2)Å c=9.7852(11)Å
α=90° β=102.152(3)° γ=90°
C40H26O18S2Sr3
C40H26O18S2Sr3
Journal of Materials Chemistry C (2018) 6, 26 7030
a=10.2325(4)Å b=10.4579(4)Å c=11.6650(4)Å
α=106.737(2)° β=108.856(2)° γ=104.541(2)°
C48H34F6IrN3P2S2
C48H34F6IrN3P2S2
Journal of Materials Chemistry C (2018) 6, 33 9010
a=11.6027(5)Å b=16.4388(7)Å c=23.8410(10)Å
α=90.00° β=101.7190(10)° γ=90.00°
C12H17NO4
C12H17NO4
Journal of Materials Chemistry B (2017) 5, 3 464
a=7.462(7)Å b=7.524(7)Å c=11.643(11)Å
α=98.794(13)° β=90.593(14)° γ=103.259(13)°
C16H25NO4,CH2
C16H25NO4,CH2
Journal of Materials Chemistry B (2017) 5, 3 464
a=32.5484(12)Å b=32.5484(12)Å c=8.2649(3)Å
α=90° β=90° γ=120°
C24H25NO4
C24H25NO4
Journal of Materials Chemistry B (2017) 5, 3 464
a=14.8761(8)Å b=9.7832(8)Å c=29.3191(19)Å
α=90° β=102.336(6)° γ=90°
C36H22Mg3O20
C36H22Mg3O20
RSC Advances (2018) 8, 45 25489
a=14.726(2)Å b=15.126(2)Å c=13.5397(18)Å
α=90° β=116.871(6)° γ=90°
C24H26MgN2O12
C24H26MgN2O12
RSC Advances (2018) 8, 45 25489
a=8.0079(7)Å b=16.8300(15)Å c=19.0430(16)Å
α=90° β=100.254(2)° γ=90°
Mg-110
0.5(C36H32Mg4O26)
RSC Advances (2018) 8, 45 25489
a=16.8934(15)Å b=14.1990(13)Å c=12.0673(11)Å
α=90° β=115.993(2)° γ=90°
C42H37Dy2N4O16
C42H37Dy2N4O16
RSC Adv. (2016)
a=29.9537(12)Å b=21.1398(9)Å c=19.4385(8)Å
α=90.00° β=93.9800(10)° γ=90.00°
C42H37Er2N4O16
C42H37Er2N4O16
RSC Adv. (2016)
a=29.9258(10)Å b=21.0418(7)Å c=19.4326(6)Å
α=90.00° β=94.0000(10)° γ=90.00°
C42H37N4O16Yb2
C42H37N4O16Yb2
RSC Adv. (2016)
a=29.8541(10)Å b=20.9459(6)Å c=19.3789(6)Å
α=90.00° β=94.0710(10)° γ=90.00°
C46H36IrN3P2S2
C46H36IrN3P2S2
Journal of Materials Chemistry C (2018) 6, 33 9010
a=16.0999(9)Å b=13.7659(8)Å c=17.3693(10)Å
α=90.00° β=92.6170(10)° γ=90.00°
C42H37N4O16Tb2
C42H37N4O16Tb2
RSC Adv. (2016)
a=29.9342(11)Å b=21.1600(7)Å c=19.5148(7)Å
α=90.00° β=93.9350(10)° γ=90.00°
C42H37Eu2N4O16
C42H37Eu2N4O16
RSC Adv. (2016)
a=30.0058(13)Å b=21.2440(9)Å c=19.5943(9)Å
α=90.00° β=93.8700(10)° γ=90.00°
C44H38Mn3O20S4,2(C2H6OS)
C44H38Mn3O20S4,2(C2H6OS)
Dalton Transactions (2017)
a=9.728(3)Å b=12.452(3)Å c=12.917(3)Å
α=90.806(4)° β=107.260(3)° γ=110.609(3)°
C24H24O11Pb2S3
C24H24O11Pb2S3
Dalton Trans. (2017)
a=32.541(3)Å b=10.2204(8)Å c=8.0517(7)Å
α=90° β=92.954(2)° γ=90°
C33H41Eu2N7O19,C3H7NO
C33H41Eu2N7O19,C3H7NO
Dalton transactions (Cambridge, England : 2003) (2011) 40, 37 9490-9497
a=13.989(3)Å b=16.567(3)Å c=21.933(3)Å
α=90.00° β=110.731(10)° γ=90.00°
C32H21Eu2O16
C32H21Eu2O16
Dalton transactions (Cambridge, England : 2003) (2011) 40, 37 9490-9497
a=30.208(5)Å b=21.295(5)Å c=18.632(3)Å
α=90.00° β=94.434(5)° γ=90.00°
C31H29Nd2O18
C31H29Nd2O18
Dalton transactions (Cambridge, England : 2003) (2015) 44, 12 5746-5754
a=14.5952(12)Å b=16.7329(11)Å c=19.5713(14)Å
α=90.00° β=107.344(3)° γ=90.00°
C31H29Dy2O18
C31H29Dy2O18
Dalton transactions (Cambridge, England : 2003) (2015) 44, 12 5746-5754
a=14.4821(18)Å b=16.7137(19)Å c=19.2130(12)Å
α=90.00° β=108.039(3)° γ=90.00°
C31H29O18Sm2
C31H29O18Sm2
Dalton transactions (Cambridge, England : 2003) (2015) 44, 12 5746-5754
a=14.4388(18)Å b=16.4128(19)Å c=19.3310(12)Å
α=90.00° β=107.606(3)° γ=90.00°
C24H22MgN2O10
C24H22MgN2O10
Dalton transactions (Cambridge, England : 2003) (2016) 45, 30 11935-11938
a=10.717(8)Å b=23.114(18)Å c=10.070(8)Å
α=90.00° β=104.780(14)° γ=90.00°
C21H16FeO4
C21H16FeO4
Dalton transactions (Cambridge, England : 2003) (2015) 44, 32 14465-14474
a=6.9465(11)Å b=11.1130(18)Å c=11.4780(19)Å
α=104.735(3)° β=92.002(3)° γ=99.754(2)°
C22H18FeO4
C22H18FeO4
Dalton transactions (Cambridge, England : 2003) (2015) 44, 32 14465-14474
a=12.984(5)Å b=7.585(3)Å c=19.439(7)Å
α=90.00° β=109.046(7)° γ=90.00°
Poly[aqua[μ~4~-2-(4-carboxylatobenzoyl)benwq3074zoato]cadmium(II)]
C15H10CdO6
Acta Crystallographica Section C (2014) 70, 11 1079-1082
a=12.664(6)Å b=30.334(15)Å c=7.060(4)Å
α=90.00° β=90.00° γ=90.00°
(<i>E</i>)-3-Methyl-5-(4-methylphenoxy)-1-phenyl-1<i>H</i>-pyrazole-4- carbaldehyde <i>O</i>-[(2-chloro-1,3-thiazol-5-yl)methyl]oxime
C22H19ClN4O2S
Acta Crystallographica Section E (2011) 67, 3 o727
a=8.114(3)Å b=11.452(4)Å c=12.494(4)Å
α=102.700(6)° β=107.885(6)° γ=93.634(7)°
4-Tosyl-1-oxa-4-azaspiro[4.5]deca-6,9-dien-8-one
C15H15NO4S
Acta Crystallographica Section E (2009) 65, 3 o649
a=11.882(3)Å b=14.973(6)Å c=8.369(5)Å
α=90.00° β=107.00(3)° γ=90.00°
<i>catena</i>-Poly[[[triaquacobalt(II)]-μ-10-methylphenothiazine- 3,7-dicarboxylato] monohydrate]
C15H15CoNO7S,H2O
Acta Crystallographica Section E (2012) 68, 4 m402-m403
a=15.3105(8)Å b=7.2983(4)Å c=29.5679(15)Å
α=90.00° β=90.00° γ=90.00°
Zinc mercury(II) tetrakis(selenocyanate)
C4HgN4Se4Zn
Acta Crystallographica Section E (2013) 69, 9 i59
a=11.27160(10)Å b=11.27160(10)Å c=4.69810(10)Å
α=90.00° β=90.00° γ=90.00°
C36H23NO
C36H23NO
Journal of the American Chemical Society (2020)
a=7.6626(3)Å b=15.2264(5)Å c=21.4966(7)Å
α=90° β=90° γ=90°
C38H24F3NO3S
C38H24F3NO3S
Journal of the American Chemical Society (2020)
a=9.6576(9)Å b=16.5515(15)Å c=10.2287(10)Å
α=90° β=109.901(3)° γ=90°
C30H22ClNO4S
C30H22ClNO4S
The Journal of organic chemistry (2017) 82, 13 6621-6628
a=8.5801(7)Å b=10.7907(9)Å c=27.200(3)Å
α=90.00° β=93.5150(10)° γ=90.00°
C11H14ClNO2
C11H14ClNO2
Journal of the American Chemical Society (2019) 141, 11 4670-4677
a=10.8480(4)Å b=4.7553(2)Å c=11.5172(5)Å
α=90° β=111.111(4)° γ=90°
C14H16BrNO
C14H16BrNO
Journal of the American Chemical Society (2017)
a=4.8610(2)Å b=9.8176(4)Å c=14.4748(5)Å
α=90° β=90.212(4)° γ=90°
C8H4ClFe2O7PS
C8H4ClFe2O7PS
Organometallics (2015) 34, 16 4147
a=9.4325(19)Å b=9.849(2)Å c=15.540(3)Å
α=90.00° β=90.00° γ=90.00°
C14H9Fe2O7PS
C14H9Fe2O7PS
Organometallics (2015) 34, 16 4147
a=14.118(3)Å b=8.3351(17)Å c=14.943(3)Å
α=90.00° β=95.71(3)° γ=90.00°
C31H24Fe2O6P2S
C31H24Fe2O6P2S
Organometallics (2015) 34, 16 4147
a=11.560(5)Å b=11.635(5)Å c=12.546(6)Å
α=95.744(6)° β=117.121(8)° γ=92.400(6)°
C16H12BrFe2O8PS
C16H12BrFe2O8PS
Organometallics (2015) 34, 16 4147
a=9.0564(18)Å b=20.059(4)Å c=12.035(2)Å
α=90.00° β=109.28(3)° γ=90.00°
C12H4ClFe2O7PS
C12H4ClFe2O7PS
Organometallics (2015) 34, 16 4147
a=17.139(5)Å b=13.756(3)Å c=14.911(4)Å
α=90° β=111.248(3)° γ=90°
C13H7Fe2O8PS
C13H7Fe2O8PS
Organometallics (2015) 34, 16 4147
a=7.9950(13)Å b=8.0320(13)Å c=13.723(2)Å
α=72.272(10)° β=84.076(16)° γ=83.405(17)°
C18H9Fe2O7PS
C18H9Fe2O7PS
Organometallics (2015) 34, 16 4147
a=24.457(3)Å b=7.6832(7)Å c=23.880(3)Å
α=90.00° β=119.266(3)° γ=90.00°
C16H14FeN2O4S
C16H14FeN2O4S
Organometallics (2014) 33, 22 6614
a=7.8345(16)Å b=8.6264(17)Å c=12.827(3)Å
α=89.43(3)° β=78.61(3)° γ=78.07(3)°
C18H14BrFeNO6
C18H14BrFeNO6
Organometallics (2014) 33, 22 6614
a=22.226(4)Å b=7.2948(15)Å c=22.905(5)Å
α=90.00° β=90.00° γ=90.00°
C24H20FeN2O7S
C24H20FeN2O7S
Organometallics (2014) 33, 22 6614
a=7.719(8)Å b=10.507(13)Å c=14.953(17)Å
α=87.84(3)° β=77.10(3)° γ=88.83(4)°
C16H12FeN2O6S
C16H12FeN2O6S
Organometallics (2014) 33, 22 6614
a=10.744(2)Å b=8.4658(17)Å c=19.003(4)Å
α=90.00° β=95.99(3)° γ=90.00°
C18.5H16FeNO6
C18.5H16FeNO6
Organometallics (2014) 33, 22 6614
a=11.118(2)Å b=10.254(2)Å c=17.233(3)Å
α=90.00° β=107.78(3)° γ=90.00°
C25H19FeNS
C25H19FeNS
Organometallics (2007) 26, 4 865
a=9.6412(8)Å b=9.6605(8)Å c=11.0470(10)Å
α=95.9980(10)° β=108.8210(10)° γ=91.0920(10)°
C37H27Fe2NS,H2O
C37H27Fe2NS,H2O
Organometallics (2007) 26, 4 865
a=19.672(2)Å b=7.5147(8)Å c=20.205(2)Å
α=90.00° β=94.327(2)° γ=90.00°