scholarly journals 12-(3,4,5-Trimethoxyphenyl)-2,3,4,12-tetrahydro-1H-5-oxatetraphen-1-one: crystal structure and Hirshfeld surface analysis

Author(s):  
Mukesh M. Jotani ◽  
P. Iniyavan ◽  
V. Vijayakumar ◽  
S. Sarveswari ◽  
Yee Seng Tan ◽  
...  

In the title compound, C26H24O5, the pyran ring has a flattened-boat conformation, with the 1,4-related ether O and methine C atoms lying 0.1205 (18) and 0.271 (2) Å, respectively, above the least-squares plane involving the doubly bonded C atoms (r.m.s deviation = 0.0208 Å). An envelope conformation is found for the cyclohexene ring, with the flap atom being the middle methylene C atom, lying 0.616 (2) Å out of the plane defined by the remaining atoms (r.m.s. deviation = 0.0173 Å). The fused four-ring system is approximately planar, with the dihedral angle between the least-squares planes through the cyclohexene and naphthyl rings being 10.78 (7)°. The trisubstituted benzene ring occupies a position almost perpendicular to the pyran ring [dihedral angle = 83.97 (4)°]. The most prominent feature of the packing is the formation of zigzag supramolecular chains mediated by aryl-C—H...O(methoxy) interactions; chains are connected into a three-dimensional architecture by methylene- and methyl-C—H...π interactions. The prevalence of C—H...O and C—H...π interactions is confirmed by an analysis of the Hirshfeld surface. A comparison with related structures suggests that the molecular conformation of the title compound is relatively robust with respect to varying substitution patterns at the methine C atom of the pyran ring.

2012 ◽  
Vol 68 (8) ◽  
pp. o2392-o2393 ◽  
Author(s):  
K. N. Venugopala ◽  
Susanta K. Nayak ◽  
Bharti Odhav

In the title compound, C33H32N2O2, the tetrahydropyridine ring adopts a boat conformation with the carbonyl group in ans-cisconformation with respect to the C=C bond of the six-membered tetrahydropyridine ring. The molecular conformation is stabilized by intramolecular N—H...O, C—H...O and C—H...π interactions. Formation of centrosymmetric head-to-head dimers is observed through pairwise intermolecular N—H...O hydrogen bonds. Additional weak C—H...O and C—H...π interactions stabilize the three-dimensional molecular assembly.


IUCrData ◽  
2016 ◽  
Vol 1 (3) ◽  
Author(s):  
Jaqueline Evangelista Queiroz ◽  
Giuliana Muniz Vila Verde ◽  
Mariette Miguens Pereira ◽  
Manuela Ramos Silva ◽  
Gilberto L. B. Aquino

In the title compound, C18H18O3, a dihydrocoumarin synthesizedviaa microwave-assisted hydroarylation reaction, the 4-methoxyphenyl ring is inclined to the mean plane of the coumarin moiety by 78.21 (9)°. The pyran ring has a screw-boat conformation and its mean plane is inclined to the fused benzene ring by 13.88 (11)°. In the crystal, molecules are linkedviaC—H...O hydrogen bonds, forming ribbons along theb-axis direction. The ribbons are linkedviaC—H...π interactions, forming slabs parallel to theabplane.


2014 ◽  
Vol 70 (2) ◽  
pp. o112-o113
Author(s):  
N. R. Sajitha ◽  
M. Sithambaresan ◽  
M. R. Prathapachandra Kurup

The molecule of the title compound, C16H17N3O2S, adopts anEconformation with respect to the azomethine C=N bond. The hydrazinecarbothioamide fragment is close to planar, with a largest deviation from the least-squares plane of 0.079 (2) Å for the hydrazide N atom. This fragment forms a dihedral angle of 9.43 (9)° with the central benzene ring. The benzene rings are inclined to one another by 67.55 (12)°. The molecular conformation is stabilized by an intramolecular O—H...N hydrogen bond involving the azomethine N atom. In the crystal, molecules are linked through weak N—H...S and N—H...O hydrogen bonds into double ribbons along [010]. The crystal packing also features C—H...π interactions.


Author(s):  
M. Suresh ◽  
M. Syed Ali Padusha ◽  
J. Josephine Novina ◽  
G. Vasuki ◽  
Vijayan Viswanathan ◽  
...  

In the title compound, C12H14N2O2S2, the dihydropyrimidine ring adopts a sofa conformation, with the C atom bearing the thienyl ring lying above the plane of the five remaining approximately coplanar (r.m.s. deviation = 0.0405 Å) atoms of the ring. The dihedral angle between the five near coplanar atoms of the ring and the thienyl ring is 89.78 (11)°. In the crystal, molecules are linked into a supramolecular chain along [100]viaN—H...O(carbonyl) hydrogen bonds. Inversion-related chains are linked into double chainsviaN—H...S(thione) hydrogen bonds. The three-dimensional architecture also features methyl–thienyl C—H...π interactions.


2013 ◽  
Vol 69 (2) ◽  
pp. o281-o281 ◽  
Author(s):  
N. Sureshbabu ◽  
V. Sughanya

In the title compound, C23H24N2O7, the central 4H-pyran ring adopts a flattened boat conformation, whereas both cyclohexenone rings adopt envelope conformations, the C atom bearing the dimethyl substituent being the flap atom in each case. The mean and maximum deviation of the pyran ring are 0.0379 (4) and 0.0605 (3) Å. The mean plane of the pyran ring and the dinitrobenzene ring make a dihedral angle of 85.88 (2)°.


2014 ◽  
Vol 70 (8) ◽  
pp. o839-o839
Author(s):  
Takeshi Oishi ◽  
Makoto Yoritate ◽  
Takaaki Sato ◽  
Noritaka Chida

In the title compound, C16H19NO3, the pyrrolidine ring is in a twist conformation. The dihedral angle between the dihydrofuran ring [maximum deviation = 0.0016 (11) Å] and the phenyl ring is 47.22 (8)°. In the crystal, molecules are linked by weak C—H...O hydrogen bonds, forming helical chains along theb-axis direction. The chains are further linked by C—H...π interactions to constitute a three-dimensional architecture.


2012 ◽  
Vol 68 (8) ◽  
pp. o2598-o2599
Author(s):  
Daichi Hijikata ◽  
Kosuke Sasagawa ◽  
Sayaka Yoshiwaka ◽  
Akiko Okamoto ◽  
Noriyuki Yonezawa

In the title compound, C30H26O6·C3H6O, thesyn-oriented benzoyl groups are nearly parallel to each other; the dihedral angle between their benzene rings is 15.9 (1)°. They form dihedral angles of 72.5 (1) and 84.3 (1)° with the naphthalene system. In the crystal, molecules are linked into a three-dimensional architecture by C—H...O and C—H...π interactions.


2015 ◽  
Vol 71 (6) ◽  
pp. o416-o416 ◽  
Author(s):  
Muhammad Salim ◽  
Muhammad Nawaz Tahir ◽  
Munawar Ali Munawar ◽  
Muhammad Shahid ◽  
Hazoor Ahmad Shad

In the title compound, C15H14ClNO, which is isostructural with its bromo analogue [Tahiret al.(2012).Acta Cryst., E68, o2730], the dihedral angle between the planes of the aromatic rings is 2.71 (7)° and an intramolecular O—H...N hydrogen bond closes anS(6) ring. In the crystal, extremely weak C—H...π interactions link the molecules into a three-dimensional network.


2012 ◽  
Vol 68 (6) ◽  
pp. o1765-o1765 ◽  
Author(s):  
Durga Prasad Singh ◽  
Seema Pratap ◽  
Ray J. Butcher ◽  
Sushil K. Gupta

The title compound, C13H11NO3S, was synthesized from methyl anthranilate, triethylamine and 2-thiophenoyl chloride in benzene. The molecular conformation is stabilized by an intramolecular N—H...O hydrogen bond. The dihedral angle between the rings is 2.74 (12)°. In the crystal, C—H...O interactions link neighbouring molecules into a three-dimensional network.


2014 ◽  
Vol 70 (3) ◽  
pp. o320-o320
Author(s):  
Hong Dae Choi ◽  
Pil Ja Seo ◽  
Uk Lee

In the title compound, C16H13BrO2S, the dihedral angle between the mean plane [r.m.s. deviation = 0.012 (1) Å] of the benzofuran ring system and the 3-methylphenyl ring is 84.83 (4)°. In the crystal, molecules are linkedviapairs of Br...O [3.240 (1) Å] contacts, forming inversion dimers. These dimers are linked by C—H...π interactions, forming a three-dimensional network.


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