Structures by: Cao H.
Total: 64
Cl,C19H18NO2,H2O,CH4O
Cl,C19H18NO2,H2O,CH4O
Journal of medicinal chemistry (2020)
a=22.7581(6)Å b=7.6989(2)Å c=23.0256(6)Å
α=90° β=113.649(3)° γ=90°
C29.64H34.56O10.36
C29.64H34.56O10.36
Organic letters (2016) 18, 18 4558-4561
a=6.9086(4)Å b=13.0711(8)Å c=29.2663(18)Å
α=90° β=90° γ=90°
C24H24O5S
C24H24O5S
Organic Chemistry Frontiers (2018) 5, 14 2219
a=5.5872(7)Å b=13.9109(13)Å c=14.4106(18)Å
α=112.533(10)° β=98.978(11)° γ=94.422(9)°
C17H12O
C17H12O
Analytical chemistry (2018) 90, 2 1402-1407
a=20.011(2)Å b=8.9570(10)Å c=13.2256(14)Å
α=90° β=92.118(2)° γ=90°
C31H38O11,H2O,2(O)
C31H38O11,H2O,2(O)
Organic letters (2017) 19, 5 1196-1199
a=11.627(2)Å b=32.192(6)Å c=8.9821(18)Å
α=90° β=90° γ=90°
C30H36O11,H2O
C30H36O11,H2O
Organic letters (2017) 19, 5 1196-1199
a=8.6631(5)Å b=12.2511(6)Å c=27.7132(16)Å
α=90° β=90° γ=90°
C61H66Cl3N8O6Tb
C61H66Cl3N8O6Tb
The Journal of Physical Chemistry B (2004) 108, 30 10796
a=12.8867(17)Å b=13.9288(15)Å c=19.090(3)Å
α=69.130(10)° β=77.076(8)° γ=65.411(4)°
C48H59N6O7Tb
C48H59N6O7Tb
The Journal of Physical Chemistry B (2004) 108, 30 10796
a=15.4491(5)Å b=23.7237(7)Å c=15.0800(5)Å
α=90.00° β=118.0640(10)° γ=90.00°
C33H36N3O3.5P0.5Tb0.5
C33H36N3O3.5P0.5Tb0.5
The Journal of Physical Chemistry B (2004) 108, 30 10796
a=12.049(2)Å b=13.986(3)Å c=18.529(4)Å
α=96.74(3)° β=104.78(3)° γ=90.23(3)°
C23H17ClN2O4S
C23H17ClN2O4S
Organic letters (2012) 14, 13 3470-3473
a=7.704(2)Å b=10.658(4)Å c=12.436(4)Å
α=82.415(10)° β=81.991(11)° γ=78.422(9)°
C23H17N3O3S2
C23H17N3O3S2
Organic letters (2012) 14, 13 3470-3473
a=10.776(2)Å b=10.992(2)Å c=11.889(2)Å
α=72.81(3)° β=70.62(3)° γ=67.65(3)°
Tl2 Cd2 (S O4)3
Cd2O12S3Tl2
Ferroelectrics (1993) 146, 45-56
a=10.3745Å b=10.3745Å c=10.3745Å
α=90° β=90° γ=90°
C23H18N2O2
C23H18N2O2
Org. Biomol. Chem. (2017)
a=11.6493(4)Å b=7.9939(3)Å c=19.7500(10)Å
α=90.00° β=94.522(3)° γ=90.00°
C22H20ClNO2
C22H20ClNO2
Organic & Biomolecular Chemistry (2009) 7, 23 4943-4953
a=17.530(3)Å b=14.759(3)Å c=14.559(3)Å
α=90.00° β=90.00° γ=90.00°
O60 Nb20 V4
Phaseknnowun
Dalton transactions (Cambridge, England : 2003) (2020) 49, 48 17584-17593
a=3.9780Å b=17.4010Å c=17.7420Å
α=90.000° β=90.000° γ=90.000°
C22H17NOSe
C22H17NOSe
Chemical communications (Cambridge, England) (2020) 56, 97 15325-15328
a=5.5032(6)Å b=14.7847(17)Å c=21.373(2)Å
α=90° β=90° γ=90°
C26H22O4
C26H22O4
RSC Advances (2020) 10, 2 739-745
a=9.2415(4)Å b=11.3298(5)Å c=8.8293(4)Å
α=90° β=90.639(4)° γ=90°
C11H9O2
C11H9O2
RSC Advances (2020) 10, 2 739-745
a=10.8929(6)Å b=8.8947(5)Å c=15.6600(8)Å
α=90° β=90° γ=90°
C22H18O4
C22H18O4
RSC Advances (2020) 10, 2 739-745
a=13.1979(16)Å b=11.4803(10)Å c=10.3400(9)Å
α=90° β=90° γ=90°
I,C24H24NO2,CH4O
I,C24H24NO2,CH4O
CrystEngComm (2019) 21, 37 5626
a=8.33640(10)Å b=24.4555(3)Å c=11.40280(10)Å
α=90° β=90.7170(10)° γ=90°
I,C24H24NO2
I,C24H24NO2
CrystEngComm (2019) 21, 37 5626
a=8.77916(11)Å b=19.3848(2)Å c=11.98474(15)Å
α=90° β=89.7480(11)° γ=90°
C19H15NO2
C19H15NO2
Green Chemistry (2019) 21, 15 4025
a=3.9198(2)Å b=25.3323(11)Å c=7.1542(3)Å
α=90° β=97.305(5)° γ=90°
C49H45IrN8O3
C49H45IrN8O3
Journal of Materials Chemistry C (2014) 2, 2150-2159
a=13.303(5)Å b=22.847(5)Å c=19.514(5)Å
α=90.00° β=132.756(15)° γ=90.00°
C30H26F10IrN8P
C30H26F10IrN8P
Journal of Materials Chemistry C (2013) 1, 1440-1449
a=9.795(5)Å b=9.798(5)Å c=19.810(5)Å
α=95.148(5)° β=97.711(5)° γ=118.407(5)°
C20H18N2O3S
C20H18N2O3S
Green Chemistry (2012) 14, 3 707
a=8.096(3)Å b=8.432(3)Å c=14.387(6)Å
α=85.320(18)° β=88.539(19)° γ=62.728(10)°
C66H46N6O21Zn4
C66H46N6O21Zn4
CrystEngComm (2017)
a=11.2432(15)Å b=21.829(3)Å c=25.837(4)Å
α=98.929(2)° β=92.438(2)° γ=94.814(2)°
C24H15Br3Cu3O15
C24H15Br3Cu3O15
CrystEngComm (2016) 18, 48 9227
a=14.042(9)Å b=18.453(11)Å c=17.330(11)Å
α=90° β=110.124(7)° γ=90°
C32H22F10IrN8P
C32H22F10IrN8P
Chem.Commun. (2012) 48, 2000
a=18.452(5)Å b=18.452(5)Å c=41.756(5)Å
α=90.000(5)° β=90.000(5)° γ=90.000(5)°
C26H16N2O4SZn
C26H16N2O4SZn
Dalton transactions (Cambridge, England : 2003) (2016) 45, 8 3334-3339
a=8.2321(10)Å b=10.6749(13)Å c=14.4681(17)Å
α=68.662(2)° β=87.955(2)° γ=72.429(2)°
C30H22N2NiO6S
C30H22N2NiO6S
Dalton transactions (Cambridge, England : 2003) (2016) 45, 8 3334-3339
a=10.3795(7)Å b=14.1058(9)Å c=17.8623(11)Å
α=90.00° β=92.0360(10)° γ=90.00°
Alpha oxalic acid dihydrate
H2C2O42H2O
Journal of Applied Crystallography (2011) 44, 3 655-658
a=6.0514(2)Å b=3.5482(16)Å c=11.996(4)Å
α=90.00° β=106.26(3)° γ=90.00°
Cyclohexyl 2-(piperidin-1-ylthiocarbonylsulfanyl)acetate
C14H23NO2S2
Acta Crystallographica Section E (2007) 63, 1 o200-o201
a=6.36430(10)Å b=9.4441(2)Å c=14.0709(5)Å
α=102.332(2)° β=96.380(2)° γ=107.483(2)°
Butyl 2-(piperidine-1-carbothioylsulfanyl)acetate
C12H21NO2S2
Acta Crystallographica Section E (2007) 63, 2 o865-o866
a=6.504(3)Å b=24.123(12)Å c=9.506(5)Å
α=90.00° β=107.513(7)° γ=90.00°
Meso-Tetrakis(4-pentyloxyphenyl)porphyrinato]silver(II)
C64H68AgN4O4
Acta Crystallographica Section E (2007) 63, 5 m1437-m1437
a=13.678(2)Å b=16.164(3)Å c=12.396(2)Å
α=90.00° β=93.788(2)° γ=90.00°
Al3.75Dy3FeMg0.25Si2
Al3.75Dy3FeMg0.25Si2
Chemistry of Materials (2013) 25, 16 3363
a=13.527(4)Å b=13.527(4)Å c=4.1422(12)Å
α=90.00° β=90.00° γ=90.00°
Al3.72FeMg0.28Si2Yb2.77
Al3.72FeMg0.28Si2Yb2.77
Chemistry of Materials (2013) 25, 16 3363
a=13.3479(9)Å b=13.3479(9)Å c=4.0996(3)Å
α=90.00° β=90.00° γ=90.00°
Al17Fe4Si6Yb5
Al17Fe4Si6Yb5
Chemistry of Materials (2013) 25, 16 3363
a=11.433(8)Å b=11.433(8)Å c=4.040(3)Å
α=90.00° β=90.00° γ=90.00°
Al3.5Er3FeGe2Mg0.5
Al3.5Er3FeGe2Mg0.5
Chemistry of Materials (2013) 25, 16 3363
a=13.562(4)Å b=13.562(4)Å c=4.1201(13)Å
α=90.00° β=90.00° γ=90.00°
Al3.5FeGe2Mg0.5Y3
Al3.5FeGe2Mg0.5Y3
Chemistry of Materials (2013) 25, 16 3363
a=13.6799(11)Å b=13.6799(11)Å c=4.1507(3)Å
α=90.00° β=90.00° γ=90.00°
C24H12Cu2O10Se
C24H12Cu2O10Se
ACS applied materials & interfaces (2020) 12, 3 3764-3772
a=18.756(2)Å b=18.756(2)Å c=37.339(10)Å
α=90° β=90° γ=120°
C21H16F3N4
C21H16F3N4
ACS combinatorial science (2019) 21, 3 149-153
a=8.9672(3)Å b=13.9684(5)Å c=14.9369(5)Å
α=90.013(2)° β=90.036(2)° γ=96.329(2)°
C25H27IN2
C25H27IN2
Crystal Growth & Design (2015) 15, 11 5560
a=7.3145(12)Å b=12.6040(14)Å c=12.3506(19)Å
α=90.00° β=106.747(16)° γ=90.00°
C29H45IN2OS
C29H45IN2OS
Crystal Growth & Design (2015) 15, 11 5560
a=12.3912(15)Å b=7.2160(8)Å c=16.781(2)Å
α=90.00° β=92.145(11)° γ=90.00°
C23H27IN2OS
C23H27IN2OS
Crystal Growth & Design (2015) 15, 11 5560
a=11.9049(8)Å b=12.9122(9)Å c=14.2096(16)Å
α=90.00° β=92.885(10)° γ=90.00°
C24H20N2O2
C24H20N2O2
The Journal of organic chemistry (2017) 82, 24 13740-13745
a=18.9318(7)Å b=9.1249(3)Å c=11.0844(4)Å
α=90° β=93.622(3)° γ=90°
C31H28N2O2S
C31H28N2O2S
The Journal of organic chemistry (2019) 84, 17 11348-11358
a=8.4805(5)Å b=22.3313(13)Å c=13.9538(8)Å
α=90° β=105.882(7)° γ=90°
C28H21ClN2O2S
C28H21ClN2O2S
The Journal of organic chemistry (2019) 84, 17 11348-11358
a=10.9009(4)Å b=10.9293(5)Å c=11.4670(6)Å
α=70.334(4)° β=64.617(4)° γ=85.903(3)°
C24H14F3NO
C24H14F3NO
The Journal of organic chemistry (2020)
a=21.308(7)Å b=10.085(2)Å c=8.125(2)Å
α=90° β=95.72(2)° γ=90°
C21H20FNO3
C21H20FNO3
The Journal of organic chemistry (2016) 81, 24 12169-12180
a=7.832(4)Å b=10.744(5)Å c=12.557(6)Å
α=112.171(6)° β=97.626(7)° γ=105.108(6)°
C25H29NO3
C25H29NO3
The Journal of organic chemistry (2016) 81, 24 12169-12180
a=8.567(5)Å b=11.294(6)Å c=11.868(6)Å
α=87.148(7)° β=80.145(6)° γ=81.838(7)°
C32H39NO5
C32H39NO5
The Journal of organic chemistry (2016) 81, 24 12169-12180
a=9.181(9)Å b=11.850(11)Å c=14.065(13)Å
α=100.841(16)° β=93.205(16)° γ=101.852(16)°
C23H19NO
C23H19NO
The Journal of organic chemistry (2016) 81, 24 12169-12180
a=12.985(7)Å b=4.030(2)Å c=32.768(17)Å
α=90° β=90.063(7)° γ=90°
C22H18O2S
C22H18O2S
Journal of Organic Chemistry (2007) 72, 8562-8564
a=5.7476(16)Å b=10.267(3)Å c=29.264(8)Å
α=90.00° β=90.00° γ=90.00°
C39H56O4Si2
C39H56O4Si2
Journal of the American Chemical Society (2003) 125, 3230-3231
a=14.43580(10)Å b=16.47100(10)Å c=17.15210(10)Å
α=105.0370(10)° β=102.0660(10)° γ=95.0260(10)°
C42H56O5Si2
C42H56O5Si2
Journal of the American Chemical Society (2003) 125, 3230-3231
a=14.89360(10)Å b=19.11160(10)Å c=16.22800(10)Å
α=90.00° β=111.94° γ=90.00°
2014/7
As2Ca0.9Co1.906Eu0.1
Journal of the American Chemical Society (2016) 138, 8 2724-2731
a=3.9984(2)Å b=3.9984(2)Å c=10.3696(6)Å
α=90° β=90° γ=90°
2014/7
As2CaCo1.87
Journal of the American Chemical Society (2016) 138, 8 2724-2731
a=3.9927(2)Å b=3.9927(2)Å c=10.3133(6)Å
α=90° β=90° γ=90°
2014/7
As2Ca0.845Co1.888La0.155
Journal of the American Chemical Society (2016) 138, 8 2724-2731
a=4.0018(2)Å b=4.0018(2)Å c=10.3726(8)Å
α=90° β=90° γ=90°
2014/7
As2Co2Eu
Journal of the American Chemical Society (2016) 138, 8 2724-2731
a=3.9290(13)Å b=3.9290(13)Å c=11.512(4)Å
α=90° β=90° γ=90°
CCo2Nd2Si
CCo2Nd2Si
Inorganic chemistry (2014) 53, 12 6141-6148
a=3.978(4)Å b=6.094(6)Å c=8.903(8)Å
α=90.00° β=90.00° γ=90.00°
CCo2Pr2Si
CCo2Pr2Si
Inorganic chemistry (2014) 53, 12 6141-6148
a=4.0027(11)Å b=6.1063(17)Å c=8.989(3)Å
α=90.00° β=90.00° γ=90.00°
DFP-Me
C16H12F3O5PS
Organometallics (2017) 36, 14 2565
a=12.9262(6)Å b=12.3641(6)Å c=12.7478(6)Å
α=90° β=118.667(3)° γ=90°
BrDFP
C14H7Br2O3P
Organometallics (2017) 36, 14 2565
a=9.5439(4)Å b=9.6719(3)Å c=15.4504(6)Å
α=90° β=90° γ=90°
DFP
C20H25O3PSi2
Organometallics (2017) 36, 14 2565
a=12.2918(5)Å b=5.9080(3)Å c=15.9551(7)Å
α=90° β=108.368(2)° γ=90°