scholarly journals 9-Allyl-9H-fluoren-9-ol

2014 ◽  
Vol 70 (6) ◽  
pp. o677-o677
Author(s):  
Kyle S. Knight ◽  
Harvey B. Wood

The asymmetric unit of the title compound, C16H14O, contains two independent molecules differing in the orientations of the allyl groups; the corresponding O—C—C(H2)—C(H) torsion angles are −61.01 (13) and −177.43 (10)°. In the crystal, O—H...O hydrogen bonds link four molecules into a centrosymmetric tetramer, in which each hydroxy group acts as a donor and an acceptor of hydrogen bonds.

2014 ◽  
Vol 70 (7) ◽  
pp. o818-o818
Author(s):  
Alexander S. Bunev ◽  
Marina A. Troshina ◽  
Gennady I. Ostapenko ◽  
Andzhela P. Pavlova ◽  
Victor N. Khrustalev

The asymmetric unit of the title compound, C11H9Br2N3O, contains two crystallographically independent molecules with similar geometries; the Br—C—C=O torsion angles are 1.2 (4) and −2.8 (4)°, and the benzene and triazole rings are inclined o one another by 51.90 (16) and 51.88 (16)°. The two molecules are related by a pseudo-screw 21axis directed along [100]. In the crystal, molecules are linked into a three-dimensional network by weak C—H...O and C—H...N hydrogen bonds and secondary Br...Br [3.5991 (8) and 3.6503 (9) Å] interactions.


IUCrData ◽  
2018 ◽  
Vol 3 (1) ◽  
Author(s):  
Mohamed Mokhtar Mohamed Abdelahi ◽  
Youness El Bakri ◽  
Mohammed Benchidmi ◽  
El Mokhtar Essassi ◽  
Joel T. Mague

The asymmetric unit of the title compound, C10H8BrN3O2, contains two independent molecules differing primarily in the orientations of the allyl substituents [N—C—C=C torsion angles = −125.4 (16) and 116.0 (16)°]. The crystal packing involves slipped π–π stacking of indazole units, together with weak C—H...O and C—H...Br hydrogen bonds. The crystal studied was refined as a two-component twin.


2015 ◽  
Vol 71 (12) ◽  
pp. 1501-1504
Author(s):  
Mahimaidoss Baby Mariyatra ◽  
Helen Stoeckli-Evans

The title compound, C3H4Cl3NO2, crystallized with two independent molecules (AandB) in the asymmetric unit. The two molecules have the same conformation; the molecular overlap gives weighted and unit-weight r.m.s. fits of 0.047 and 0.043 Å, respectively. The conformation of theN-(hydroxethyl)formamide chains are very similar, as indicated by the C—N(H)—C=O and C—N(H)—C—O(H) torsion angles, which are, respectively, −1.8 (3) and −91.5 (2)° for moleculeA, and −2.1 (3) and −95.7 (2)° for moleculeB. In the crystal, individual molecules are linked by pairs of O—H...O hydrogen bonds, formingA–AandB–Binversion dimers withR22(12) ring motifs. The dimers are linkedviaN—H...O hydrogen bonds, forming alternating layers ofAandBmolecules parallel to thebcplane. Within the layers ofBmolecules, there are weak C—H...Cl hydrogen bonds present.


2014 ◽  
Vol 70 (6) ◽  
pp. o661-o661
Author(s):  
K. Shubakara ◽  
Chandra ◽  
N. Srikantamurthy ◽  
M. Mahendra ◽  
K. B. Umesha

The asymmetric unit of title compound, C12H12N2O4, consists of two independent molecules. In each molecule, the oxadiazine ring has a flattened envelope conformation with the methylene C atom as the flap atom, and the ethoxycarbonyl unit is in asyn-periplanarconformation with respect to the oxadiazine ring as indicated by O—C—C=O torsion angles of 1.9 (4) and 2.5 (4)°. The dihedral angles between the mean plane of the oxadiazine ring and the phenyl ring are 80.07 (13) and 42.98 (14)°. In the crystal, molecules are linked by C—H...O hydrogen bonds and stacked in a double-column along thea-axis direction.


2014 ◽  
Vol 70 (7) ◽  
pp. o827-o828
Author(s):  
Shaaban K. Mohamed ◽  
Joel T. Mague ◽  
Mehmet Akkurt ◽  
Alaa A. Hassan ◽  
Mustafa R. Albayati

The asymmetric unit of the title compound, C10H17N3S, consists of three symmetry-independent molecules with distinctly different conformations, as indicated for example by the C—N—C—C torsion angles of −155.9 (3), 89.9 (3) and 81.1 (4)° along the bond between thiourea and allyl units. In the crystal, molecules are connectedviaN—H...N and N—H...S hydrogen bonds into chains extending along [110] that are further associated through C—H...N interactions into layers parallel to (001). The allyl group in one of the independent molecules is disordered over two sets of sites with an occupancy ratio of 0.853 (6):0.147 (6).


IUCrData ◽  
2018 ◽  
Vol 3 (1) ◽  
Author(s):  
Walid Guerrab ◽  
Rachida Akrad ◽  
Mhammed Ansar ◽  
Jamal Taoufik ◽  
Joel T. Mague ◽  
...  

The asymmetric unit of the title compound, C22H18N2O2, consists of two independent molecules differing primarily in the orientation of the benzyl substituent. The two independent molecules are associated through complementary C—H...π interactions and are elaborated into corrugated sheets by paired N—H...O and C—H...O hydrogen bonds. Additional C—H...O hydrogen bonds bind the sheets together.


IUCrData ◽  
2020 ◽  
Vol 5 (7) ◽  
Author(s):  
Kathleen S. Lee ◽  
Luke Turner ◽  
Cynthia B. Powell ◽  
Eric W. Reinheimer

The title compound, C16H14FNO3, was synthesized via solid phase methods; it exhibits monoclinic (P21) symmetry at room temperature. The two independent molecules that comprise the asymmetric unit display distinct torsion angles of 173.2 (2) and 72.6 (2)° along the central sp 3 C—N bond. In the crystal, hydrogen bonding through N—H...O contacts couples the asymmetric unit molecules into pairs that align in layers extending parallel to (100) via additional O—H...O interactions. The phenyl ring of one independent molecule was found to be disordered over two sets of sites in a 0.55 (3):0.45 (3) ratio.


2013 ◽  
Vol 69 (2) ◽  
pp. o230-o230
Author(s):  
Binbin Zhang ◽  
Yifeng Wang ◽  
Kun Dong ◽  
Danqian Xu

There are three independent molecules in the asymmetric unit of the title compound, C9H11NO3, which are connected by O—H...O hydrogen bonds, forming anR33(15) ring. The dihedral angles between the planes of the benzene and amide groups are 75.16 (3), 71.47 (3) and 70.56 (3)°. The hydroxy O atom lies 0.912 (3), 1.172 (2) and 1.339 (2) Å from the mean plane of the corresponding benzene ring in the three molecules.


IUCrData ◽  
2017 ◽  
Vol 2 (9) ◽  
Author(s):  
Ningfeng Zhao ◽  
Aanuoluwapo Adeyemi ◽  
Arielle Pompilius

There are two independent molecules in the asymmetric unit of the title compound, C16H11N3. The molecules are linked by pairs of N—H...N hydrogen bonds, forming inversion dimers with anR22(6) ring motif.


2014 ◽  
Vol 70 (11) ◽  
pp. 379-381
Author(s):  
Brigita Vigante ◽  
Dmitrijs Stepanovs ◽  
Andrejs Pelss ◽  
Anatoly Mishnev

The asymmetric unit of the title compound, C10H14N2O3, contains two independent molecules with similar conformations. In the both molecules, the cyclohexene rings adopt the same envelope conformation with the flap C atoms lying 0.658 (3) and 0.668 (3) Å from the mean planes formed by the remaining atoms. In the crystal, adjacent molecules are connectedviaN—H...O hydrogen bonds and weak C—H...O interactions, forming supramolecular layers parallel to (-101).


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