scholarly journals Crystal structure of 1-benzoyl-3-(4-fluorophenyl)thiourea

2014 ◽  
Vol 70 (9) ◽  
pp. o1023-o1024
Author(s):  
Rabab Sharaf Jassas ◽  
Abdullah M. Asiri ◽  
Muhammad Nadeem Arshad ◽  
Mohie E. M. Zayed ◽  
Ghulam Mustafa

The title compound, C14H11FN2OS, contains two molecules (AandB) in the asymmetric unit, with different conformations. In moleculeA, the dihedral angles between the central thiourea grouping and the phenyl and fluorobenzene rings are 28.77 (8) and 41.82 (8)°, respectively, and the dihedral angle between the ring planes is 70.02 (9)°. Equivalent data for moleculeBare 8.46 (8), 47.78 (8) and 52.99 (9)°, respectively. Both molecules feature an intramolecular N—H...O hydrogen bond, which closes anS(6) ring. In the crystal,A+Bdimers linked by pairs of N—H...S hydrogen bonds generateR22(8) loops.

2015 ◽  
Vol 71 (6) ◽  
pp. o425-o425 ◽  
Author(s):  
Farook Adam ◽  
Nadiah Ameram ◽  
Wai Mun Tan

There are two molecules in the asymmetric unit of the title compound, C9H10N2OS. In one, the dihedral angle between the aromatic ring and the carbamothioyl group is 52.31 (7)° and in the other it is 36.16 (6)°. Each molecule features an intramolecular N—H...O hydrogen bond, which generates anS(6) ring and the O and S atoms have anantidisposition. In the crystal, molecules are linked by N—H...S and N—H...O hydrogen bonds, generating separate [130] and [1-30] infinite chains. Weak C—H...O and C—H...S interactions are also observed.


2014 ◽  
Vol 70 (10) ◽  
pp. o1122-o1123
Author(s):  
Julio Zukerman-Schpector ◽  
I. Caracelli ◽  
Hélio A. Stefani ◽  
Amna N. Khan ◽  
Edward R. T. Tiekink

In the title compound, C15H20BrNO2, there are two independent molecules (AandB) comprising the asymmetric unit and these adopt very similar conformations. InA, the dihedral angle between the CO2and MeC=CMe2groups is 80.7 (3)°, and these make dihedral angles of 3.5 (3) and 84.09 (16)°, respectively, with the bromobenzene ring. The equivalent dihedral angles for moleculeBare 78.4 (3), 2.1 (3) and 78.37 (12)°, respectively. The most prominent interactions in the crystal packing are amine-N—H...O(carbonyl) hydrogen bonds between the two independent molecules, resulting in non-centrosymmetric ten-membered {...OC2NH}2synthons. Statistical disorder is noted for each of the terminal methyl groups of the ethyl residues.


2015 ◽  
Vol 71 (12) ◽  
pp. o912-o913 ◽  
Author(s):  
P. S. Manjula ◽  
B. K. Sarojini ◽  
B. Narayana ◽  
K. Byrappa ◽  
S. Madan Kumar

The title compound, C10H9FN4S, crystallizes with two molecules (AandB) in the asymmetric unit. The dihedral angle between the planes of the trizole and fluorobenzene rings is 7.3 (3)° in moleculeAand 41.1 (3)° in moleculeB. MoleculeAfeatures an intramolecular C—H...S hydrogen bond, which closes anS(6) ring. In the crystal,A+Bdimers linked by pairs of N—H...S hydrogen bonds occur, generatingR22(8) loops. Weak π–π stacking contacts [centroid–centroid separation = 3.739 (6) Å] are also observed.


Author(s):  
Karthik Ananth Mani ◽  
Vijayan Viswanathan ◽  
S. Narasimhan ◽  
Devadasan Velmurugan

The asymmetric unit of the title compound, C17H17N3O2S, consists of two independent molecules,AandB, with different conformations: in moleculeA, the dihedral angles between the central benzene ring and the pendant tolyl and carbamothioylhydrazono groups are 71.12 (9) and 5.95 (8)°, respectively. The corresponding angles in moleculeBare 50.56 (12) and 26.43 (11)°, respectively. Both molecules feature an intramolecular N—H...N hydrogen bond, which closes anS(5) ring. In the crystal, molecules are linked by N—H...O, N—H...S and C—H...O hydrogen bonds, generating a three-dimensional network.


2014 ◽  
Vol 70 (9) ◽  
pp. o917-o918 ◽  
Author(s):  
Błażej Dziuk ◽  
Bartosz Zarychta ◽  
Krzysztof Ejsmont

The asymmetric unit of the title compound, C2H8N+·C4H5O4−, consists of two allylammonium cations and two hydrogen succinate anions (Z′ = 2). One of the cations has a near-perfectsyn-periplanar (cis) conformation with an N—C—C—C torsion angle of 0.4 (3)°, while the other is characterized by agaucheconformation and a torsion angle of 102.5 (3)°. Regarding the anions, three out of four carboxilic groups are twisted with respect to the central C–CH2–CH2–C group [dihedral angles = 24.4 (2), 31.2 (2) and 40.4 (2)°], the remaining one being instead almost coplanar, with a dihedral angle of 4.0 (2)°. In the crystal, there are two very short, near linear O—H...O hydrogen bonds between anions, with the H atoms shifted notably from the donor O towards the O...O midpoint. These O—H...O hydrogen bonds form helical chains along the [011] which are further linked to each other through N—H...O hydrogen bonds (involving all the available NH groups), forming layers lying parallel to (100).


Author(s):  
Rajeswari Gangadharan ◽  
Mathiyan Muralisankar ◽  
Anandaram Sreekanth ◽  
Abdullakutty Anees Rahman ◽  
K. Sethusankar

In the asymmetric unit of the title compound, C16H17N3O2S, there are two independent molecules (AandB), which show anEconformation with respect to the C=N bond. An intramolecular O—H...N hydrogen bond with anS(6) motif stabilizes the molecular structure. The terminal phenyl and benzene rings are almost orthogonal to each other, the dihedral angle being 87.47 (13)° for moleculeAand 89.86 (17)° for moleculeB. In the crystal, weak bifurcated N—H...(O,O) hydrogen bonds link the two independent molecules, forming a supramolecular chain with aC21(14)[R21(5)] motif along thebaxis. A weak C—H...O interaction is also observed in the chain.


2015 ◽  
Vol 71 (12) ◽  
pp. o908-o909
Author(s):  
M. S. Krishnamurthy ◽  
N. L. Prasad ◽  
H. Nagarajaiah ◽  
Noor Shahina Begum

In the title compound, C16H23N3O3S, the dihedral angles between the thiophene ring and the almost planar dimethylamino-methyleneamino (r.m.s. deviation = 0.005 Å) and dimethylamino-acryloyl (r.m.s. deviation = 0.033 Å) substituents are 6.99 (8) and 6.69 (7)°, respectively. The ester CO2group subtends a dihedral angle of 44.92 (18)° with the thiophene ring. An intramolecular C—H...O hydrogen bond generates anS(6) ring. In the crystal, inversion dimers linked by pairs of C—H...O hydrogen bonds generateR22(14) loops. In addition, a weak C—H...π interaction is observed.


Author(s):  
Chetan Shrimandhar Shripanavar ◽  
Ray J. Butcher

The title compound, C24H22N4O5, crystallizes with two molecules in the asymmetric unit (Z′ = 2) oriented almost perpendicular to each other [dihedral angle between the central core of each molecule = 77.95 (3)°]. The two molecules exhibit similar conformations with an extended structure. An intramolecular C—H...N hydrogen bond occurs in each molecule. The two molecules are linked by a bifurcated N—H...(O,N) hydrogen bond involving the NH group in moleculeAas donor. They are further linked into a ribbon along thea-axis direction by further bifurcated N—H...(O,N) hydrogen bonds involving the NH group in moleculeBas donor. C—H...O interactions are also observed.


Author(s):  
Imelda Pérez-Pérez ◽  
Diego Martínez-Otero ◽  
Susana Rojas-Lima ◽  
Heraclio López-Ruiz

Crystals of the title compound, C13H10N2O, were grown from a dichloromethane/ketone/methanol solvent mixture. It crystallizes with two molecules,AandB, in the asymmetric unit with very similar almost planar conformations [dihedral angles between the ring planes = 0.74 (8) and 0.67 (6)° for moleculesAandB, respectively; r.m.s. overlay fit = 0.019 Å]. Each molecule features an intramolecular N—H...N hydrogen bond, which closes anS(6) ring and therefore establishes asynrelationship for the N atoms. In the crystal, molecules are linked by N—H...N hydrogen bonds, generating [100] chains containing alternatingAandBmolecules. Weak aromatic π–π stacking [minimum centroid–centroid separation = 3.6212 (9) Å] links the chains into a three-dimensional network.


2014 ◽  
Vol 70 (11) ◽  
pp. o1209-o1209
Author(s):  
Nobuto Yoshinari ◽  
Takumi Konno

In the asymmetric unit of the title compound, C19H23NO2S·H2O, there are two independent organic molecules and two water molecules. Both organic molecules exist as the zwitterionic form. The dihedral angles between the planes of the rings in the organic molecules are 86.84 (10) and 88.77 (11)°. An intramolecular N—H...S hydrogen bond occurs. In the crystal, organic and water molecules are linked by N—H...O and O—H...O hydrogen bonds, generating a tape structure running along theb-axis direction.


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