Structures by: Chen H. P.
Total: 41
C19H30O2
C19H30O2
Journal of natural products (2020)
a=21.2462(12)Å b=8.9711(5)Å c=8.8437(5)Å
α=90° β=98.3760(10)° γ=90°
C19H30O3
C19H30O3
Journal of natural products (2020)
a=6.8215(6)Å b=10.0565(8)Å c=24.1425(19)Å
α=90° β=90° γ=90°
C19H30O3
C19H30O3
Journal of natural products (2020)
a=8.4484(2)Å b=22.6578(4)Å c=17.8169(3)Å
α=90° β=90.0060(10)° γ=90°
C30H38O5
C30H38O5
Journal of agricultural and food chemistry (2018)
a=6.2081(3)Å b=19.8715(11)Å c=20.2149(11)Å
α=90.00° β=90.00° γ=90.00°
C21H28O7
C21H28O7
Organic letters (2017) 19, 19 5201-5203
a=6.70380(10)Å b=8.3662(2)Å c=16.9526(3)Å
α=90° β=93.1980(10)° γ=90°
Xylarilongipin A
C19H28O2,H2O
Organic & biomolecular chemistry (2020) 18, 13 2410-2415
a=7.5487(2)Å b=6.7333(2)Å c=15.8235(5)Å
α=90° β=93.4590(10)° γ=90°
Xylarilongipin B
C20H28O3
Organic & biomolecular chemistry (2020) 18, 13 2410-2415
a=7.6786(3)Å b=10.5655(4)Å c=40.1904(16)Å
α=90° β=90° γ=90°
Hymatoxin L
C20H30O3
Organic & biomolecular chemistry (2020) 18, 13 2410-2415
a=11.5943(6)Å b=6.2502(3)Å c=12.5743(7)Å
α=90° β=107.5160(10)° γ=90°
Cd2Cl8,4(C2ClN)
Cd2Cl8,4(C2ClN)
Dalton transactions (Cambridge, England : 2003) (2018) 47, 20 7005-7012
a=7.5041(15)Å b=24.658(5)Å c=7.4996(15)Å
α=90° β=90° γ=90°
C4H14Br4CdCl2N2
C4H14Br4CdCl2N2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 20 7005-7012
a=7.9926(16)Å b=24.108(5)Å c=7.9560(16)Å
α=90.00° β=90.00° γ=90.00°
BrCdCl3,3(CH3.50Cl0.50N0.50)
BrCdCl3,3(CH3.50Cl0.50N0.50)
Dalton transactions (Cambridge, England : 2003) (2018) 47, 20 7005-7012
a=7.6707(10)Å b=24.6215(19)Å c=7.5742(10)Å
α=90.00° β=90.00° γ=90.00°
C4H14BrCdCl5N2
C4H14BrCdCl5N2
Dalton transactions (Cambridge, England : 2003) (2018) 47, 20 7005-7012
a=7.649(11)Å b=24.42(4)Å c=7.579(10)Å
α=90.00° β=90.00° γ=90.00°
C15H22O2
C15H22O2
RSC Advances (2019) 9, 63 36931
a=7.70800(10)Å b=12.5490(2)Å c=13.1278(2)Å
α=90° β=90° γ=90°
C16H24O4
C16H24O4
RSC Advances (2019) 9, 63 36931
a=6.4948(2)Å b=7.4524(3)Å c=15.2812(6)Å
α=90° β=101.0040(10)° γ=90°
Br3Cd,C5H12N
Br3Cd,C5H12N
RSC Advances (2017) 7, 82 52024
a=6.977(14)Å b=15.04(3)Å c=12.106(18)Å
α=90° β=123.82° γ=90°
Br3Cd,C5H12N
Br3Cd,C5H12N
RSC Advances (2017) 7, 82 52024
a=15.322(4)Å b=7.0479(14)Å c=10.105(4)Å
α=90° β=90° γ=90°
Br3Cd,3(C5H12N),Br4Cd
Br3Cd,3(C5H12N),Br4Cd
RSC Advances (2017) 7, 82 52024
a=15.553(12)Å b=15.553(12)Å c=7.117(8)Å
α=90° β=90° γ=120°
C4H9.05N1.05,C5H12N,Br4Cd,CH3
C4H9.05N1.05,C5H12N,Br4Cd,CH3
RSC Advances (2017) 7, 82 52024
a=12.409(18)Å b=13.230(14)Å c=23.79(3)Å
α=90° β=90° γ=90°
Br3Cd,3(C5H12N),Br4Cd
Br3Cd,3(C5H12N),Br4Cd
RSC Advances (2017) 7, 82 52024
a=15.358(2)Å b=15.358(2)Å c=7.0766(14)Å
α=90° β=90° γ=120°
2(C5H12N),Br4Cd
2(C5H12N),Br4Cd
RSC Advances (2017) 7, 82 52024
a=12.421(7)Å b=13.319(7)Å c=24.209(13)Å
α=90° β=90° γ=90°
C6H14CdCl3N
C6H14CdCl3N
CrystEngComm (2017) 19, 14 1896
a=6.7868(14)Å b=20.823(4)Å c=7.4953(15)Å
α=90° β=90° γ=90°
C12H28Cd2Cl6N2
C12H28Cd2Cl6N2
CrystEngComm (2017) 19, 14 1896
a=6.779(6)Å b=7.648(6)Å c=20.8582(17)Å
α=90° β=90° γ=90°
C6H18N3,Cl5Cu,2(H2O)
C6H18N3,Cl5Cu,2(H2O)
Dalton Trans. (2017)
a=9.5172(15)Å b=9.1962(9)Å c=17.797(2)Å
α=90° β=97.375(9)° γ=90°
C6H18N3,Cl5Cu,2(H2O)
C6H18N3,Cl5Cu,2(H2O)
Dalton Trans. (2017)
a=9.538(4)Å b=9.165(4)Å c=17.786(8)Å
α=90° β=97.736(6)° γ=90°
C6H18N3,Cl5Cu,2(H2O)
C6H18N3,Cl5Cu,2(H2O)
Dalton Trans. (2017)
a=9.509(6)Å b=9.215(5)Å c=17.794(11)Å
α=90° β=97.303(10)° γ=90°
C6H18N3,Cl5Cu,2(H2O)
C6H18N3,Cl5Cu,2(H2O)
Dalton Trans. (2017)
a=9.5510(12)Å b=9.2511(12)Å c=17.878(3)Å
α=90° β=97.503(9)° γ=90°
C6H18N3,Cl5Cu,2(H2O)
C6H18N3,Cl5Cu,2(H2O)
Dalton Trans. (2017)
a=9.5980(19)Å b=9.2921(19)Å c=18.051(4)Å
α=90° β=98.01(3)° γ=90°
C6H18N3,Cl5Cu,2(H2O)
C6H18N3,Cl5Cu,2(H2O)
Dalton Trans. (2017)
a=9.5904(19)Å b=9.2794(19)Å c=18.072(4)Å
α=90° β=98.15(3)° γ=90°
Br5Cd,C6H21Br3N3
Br5Cd,C6H21Br3N3
Dalton transactions (Cambridge, England : 2003) (2017) 46, 14 4711-4716
a=23.84(5)Å b=7.875(11)Å c=23.38(4)Å
α=90.00° β=102.14(3)° γ=90.00°
Br5Cd,C6H21Br3N3
Br5Cd,C6H21Br3N3
Dalton transactions (Cambridge, England : 2003) (2017) 46, 14 4711-4716
a=23.92(4)Å b=7.927(9)Å c=23.60(3)Å
α=90° β=102.41(2)° γ=90°
C30H38BF4N2PPd
C30H38BF4N2PPd
Dalton Transactions (2003) 7 1419
a=9.4710(2)Å b=12.1480(3)Å c=14.1510(4)Å
α=104.0900(10)° β=94.3890(10)° γ=103.3000(10)°
C29H39ClNPPd
C29H39ClNPPd
Dalton Transactions (2003) 7 1419
a=9.79400(10)Å b=12.24100(10)Å c=13.1120(2)Å
α=75.4280(10)° β=72.4730(10)° γ=72.8460(10)°
C60H78Cl2N2O2P2Pd2
C60H78Cl2N2O2P2Pd2
Dalton Transactions (2003) 7 1419
a=12.3940(2)Å b=16.7220(3)Å c=15.0540(2)Å
α=90.00° β=106.5590(10)° γ=90.00°
C66H94Cl2N2P2Pd2
C66H94Cl2N2P2Pd2
Dalton Transactions (2003) 7 1419
a=11.54900(10)Å b=16.13000(10)Å c=17.9020(2)Å
α=94.5540(10)° β=101.6010(10)° γ=91.3250(10)°
C18H17CdN3O5,H2O
C18H17CdN3O5,H2O
Crystal Growth & Design (2012) 12, 4 2004
a=9.4732(19)Å b=16.447(3)Å c=12.033(3)Å
α=90.00° β=95.480(4)° γ=90.00°
C86H100Cd3N6O12
C86H100Cd3N6O12
Crystal Growth & Design (2012) 12, 4 2004
a=19.301(3)Å b=12.677(2)Å c=19.591(3)Å
α=90.00° β=115.071(3)° γ=90.00°
C24H19CdCl2N3O4
C24H19CdCl2N3O4
Crystal Growth & Design (2012) 12, 4 2004
a=12.395(3)Å b=12.876(3)Å c=16.525(4)Å
α=74.440(4)° β=74.126(6)° γ=88.730(6)°
C15H14CdN3O5,5(H2O)
C15H14CdN3O5,5(H2O)
Crystal Growth & Design (2012) 12, 4 2004
a=11.443(4)Å b=9.828(3)Å c=19.074(7)Å
α=90.00° β=107.249(6)° γ=90.00°
CdCl4,2(C5H14N)
CdCl4,2(C5H14N)
Inorganic Chemistry Frontiers (2017) 4, 8 1330
a=7.45(3)Å b=33.85(17)Å c=7.42(4)Å
α=90° β=90° γ=90°
CdCl4,2(C5H14N)
CdCl4,2(C5H14N)
Inorganic Chemistry Frontiers (2017) 4, 8 1330
a=7.5775(15)Å b=33.673(7)Å c=7.6500(15)Å
α=90° β=90° γ=90°
Br4Cd,2(C5H14N)
Br4Cd,2(C5H14N)
Inorganic Chemistry Frontiers (2017) 4, 8 1330
a=8.0554(10)Å b=33.2382(9)Å c=8.0623(5)Å
α=90° β=90° γ=90°