Crystal structure of camphor-1,4-homoenol p-bromobenzoate

1980 ◽  
Vol 58 (24) ◽  
pp. 2805-2807 ◽  
Author(s):  
Richard A. Pauptit ◽  
James Trotter

Crystals of the title compound, C17H19BrO2, are orthorhombic, P212121, a = 6.875(1), b = 8.522(2), c = 26.658(6) Å, Z = 4. The structure was determined by Patterson and Fourier methods, and refined to R = 0.045 for 697 reflections with I ≥ 3σ(I); the absolute configuration was established. The four-membered ring is tightly folded, and bond angles in the vicinity of this ring indicate considerable strain.

2006 ◽  
Vol 62 (5) ◽  
pp. o1774-o1776 ◽  
Author(s):  
Andrzej Gzella ◽  
Maria Chrzanowska ◽  
Agnieszka Dreas ◽  
Michał S. Kaczmarek ◽  
Zenon Woźniak

The absolute configuration of the title compound, C24H23NO2, has been confirmed as 3R,4R. The hydroxymethyl group and phenyl ring at the asymmetric C atoms exhibit α and β orientations, respectively, and the non-planar heterocyclic ring of the tetrahydroisoquinoline system adopts an envelope conformation. The crystal structure is stabilized through hydrogen bonds.


2007 ◽  
Vol 63 (11) ◽  
pp. o4196-o4196
Author(s):  
Wen-liang Wang ◽  
Hong-wen Tao ◽  
Wei Sun ◽  
Qian-Qun Gu ◽  
Wei-Ming Zhu

The title compound, C21H32O3, also known as dimethylincisterol A3, was isolated from halotolerant fungus THW-18. It is composed of three fused rings and a side chain. In the crystal structure, the molecules interact with each other via O—H...O hydrogen bonds, resulting in an extended chain along the b axis. The absolute configuration was assigned from the measured optical rotation and reference to the literature.


2007 ◽  
Vol 63 (11) ◽  
pp. o4439-o4439
Author(s):  
Hao Shi

The title compound, C22H26O8, prepared from the natural diterpenoid Macrocalyxin J, is built up from five fused rings. Cyclohenane ring A adopts a chair conformation, ring B exists in a screw-boat conformation and ring C adopts a boat conformation; the two five membered rings adopt envelope conformations. Two unique molecules are present in the asymmetric unit; both independent molecules have the same absolute configuration, the absolute configuration being deduced from the chirality of Macrocalyxin A, which was isolated from the same plant (i.e. Rabdosia macrocalyx) as Macrocalyxin J. The crystal structure displays intermolecular O—H...O hydrogen bonds.


2013 ◽  
Vol 69 (11) ◽  
pp. o1692-o1693 ◽  
Author(s):  
Abdoullah Bimoussa ◽  
Aziz Auhmani ◽  
My Youssef Ait Itto ◽  
Jean-Claude Daran ◽  
Abdelwahed Auhmani

The absolute configuration of the title compound, C16H23BrCl2, has been deduced from the chemical pathway and fully confirmed by refinement of the Flack and Hooft parameters. The six-membered ring adopts a half-chair conformation, whereas the seven-membered ring is a twisted chair. The molecular packing within the crystal is stabilized only by van der Waals interactions.


Author(s):  
Rachid Outouch ◽  
Saadia Oubaassine ◽  
Mustapha Ait Ali ◽  
Larbi El Firdoussi ◽  
Anke Spannenberg

The asymmetric unit of the title compound, C14H25NO3, contains two independent molecules with similar geometry. The morpholine and cyclohexane rings of both molecules adopt a chair conformation. Intramolecular O—H...N hydrogen bonds are observed. In the crystal, molecules are linked by O—H...O hydrogen bonds into chains parallel to the [101] direction. The chains are further connected through C—H...O hydrogen bonds forming undulating layers parallel to the (-101) plane. The absolute configuration was assigned by reference to an unchanging chiral centre in the synthetic procedure.


2006 ◽  
Vol 62 (7) ◽  
pp. o2622-o2624 ◽  
Author(s):  
Xiao-Feng Yang ◽  
Da-Qi Wang ◽  
Guang-You Zhang ◽  
Takuji Hirose

The title compound, C20H28NO+·Cl−, was synthesized by a condensation reaction. The absolute configuration of the new stereogenic centre (the C atom between the N atom and the phenol ring) was determined as R. The crystal structure is stabilized through N—H...Cl and O—H...Cl hydrogen bonds and intramolecular N—H...O hydrogen bonding.


2006 ◽  
Vol 62 (7) ◽  
pp. o3011-o3012 ◽  
Author(s):  
Qing Yuan ◽  
Ming Lei

The absolute configuration of the title compound, C20H26BrNO3, was determined from both the synthetic precursor and anomalous scattering effects. In the crystal structure, non-classical C—H...O hydrogen bonds link the molecules into a sheet parallel to the b axis.


2015 ◽  
Vol 71 (12) ◽  
pp. o1055-o1056
Author(s):  
Zhiwei Zhao ◽  
Wenqiang Fan ◽  
Yixiang Zhang ◽  
Ya Li

The title compound, C14H20FNO3S, contains two chiral carbon centres and the absolute configuration has been confirmed as (2R,3S). In the crystal, adjacent molecules are linked by weak C—H...O hydrogen bonds, generating zigzag chains along thea-axis direction.


2015 ◽  
Vol 71 (12) ◽  
pp. o904-o905 ◽  
Author(s):  
David Tymann ◽  
Dina Christina Dragon ◽  
Christopher Golz ◽  
Hans Preut ◽  
Carsten Strohmann ◽  
...  

The title compound, C17H24N2O3S, was synthesized in order to determine the relative configuration of the corresponding β-keto aldehyde. In the U-shaped molecule, the five-membered ring approximates an envelope, with the methylene C atom adjacent to the quaternary C atom being the flap, and the methyl and isopropyl substituents lying to the same side of the ring. The dihedral angles between the four nearly coplanar atoms of the five-membered ring and the flap and the aromatic ring are 35.74 (15) and 55.72 (9)°, respectively. The bond angles around the S atom are in the range from 103.26 (12) to 120.65 (14)°. In the crystal, molecules are linkedviaN—H...O hydrogen bonds, forming a chain along theaaxis.


2007 ◽  
Vol 63 (11) ◽  
pp. o4368-o4369
Author(s):  
Guang-You Zhang ◽  
Ming Li ◽  
Wan-Hui Wang ◽  
Xun-Gang Gu

2-{(R)-1-[(S)-1-(2-Methoxy-5-methylphenyl)-2-phenylethylamino]butyl}-4-methylphenol has been synthesized and its absolute configuration determined from the crystal structure of its hydrochloride, the title compound, C27H34NO2 +·Cl−. The absolute configuration of the stereogenic center that carries the 2-methoxy-5-methylphenyl substituent was found to be R. Intermolecular N—H...Cl and O—H...Cl and intramolecular N—H...O hydrogen bonds stabilize the structure.


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