scholarly journals N-(1H-Indol-3-ylmethylidene)-4-methylpiperazin-1-amine

2013 ◽  
Vol 69 (11) ◽  
pp. o1706-o1706 ◽  
Author(s):  
Channappa N. Kavitha ◽  
Jerry P. Jasinski ◽  
Brian J. Anderson ◽  
H. S. Yathirajan ◽  
Manpreet Kaur

In the title compound, C14H18N4, the piperazine ring is in a slightly distorted chair conformation. The indole ring system is twisted from the piperazine ring, making a dihedral angle of 7.27 (11)°. In the crystal, N—H...N hydrogen bonds link molecules into chains along [10-1].

2014 ◽  
Vol 70 (3) ◽  
pp. o287-o287
Author(s):  
Mi Zhou ◽  
Ying Shao ◽  
Yong-an Xia ◽  
Xiao-Long Liu ◽  
Xiao-Qiang Sun

In the title compound, C15H19N3O2, the piperazine ring adopts a chair conformation, with its N—C bonds in pseudo-equatorial orientations. The dihedral angle between the C atoms of the piperazine ring and the phthalamide ring system (r.m.s. deviaiton = 0.008 Å) is 89.30 (8)°. In the crystal, molecules are linked by C—H...O hydrogen bonds, generating a three-dimensional network and aromatic π–π interactions also occur [centroid–centroid distances = 3.556 (1)–3.716 (1) Å].


2014 ◽  
Vol 70 (3) ◽  
pp. o295-o296
Author(s):  
C. Ramathilagam ◽  
P. R. Umarani ◽  
V. Saravanan ◽  
A. K. Mohanakrishnan ◽  
B. Gunasekaran ◽  
...  

In the title compound, C17H14BrNO3S, the phenyl ring makes a dihedral angle of 89.78 (16)° with the plane of the indole ring system. The terminal Br atom and the methyl group are disordered over two sets of sites, with site occupancies of 0.860 (2) and 0.140 (2). In the crystal, molecules are linked into a chain along theb-axis direction by weak C—H...O hydrogen bonds. The chains are further linked by C—H...π interactions, forming layers parallel to thebcplane.


2014 ◽  
Vol 70 (5) ◽  
pp. o540-o540
Author(s):  
Vinodhkumar Vijayakumar ◽  
Gunther H. Peters ◽  
M. Suresh ◽  
Raghunathan Raghavachary ◽  
G. Jagadeesan

In the title compound, C27H28N2O4, the pyrrolidine ring adopts a twist conformation. The plane of the indole ring is almost perpendicular to that of the pyrrolidine ring, making a dihedral angle of 88.50 (6)°. The planes of the naphthyl ring system and the pyrrolidine ring are tilted by an angle of 55.86 (5)°. The molecular conformation is stabilized by intramolecular O—H...O and O—H...N hydrogen bonds.


2013 ◽  
Vol 69 (2) ◽  
pp. o235-o235 ◽  
Author(s):  
G. Ganesh ◽  
Panneer Selvam Yuvaraj ◽  
Chinthalapuri Divakara ◽  
Boreddy S. R. Reddy ◽  
A. SubbiahPandi

In the title compound, C26H22N2O4, the pyrrolidine ring adopts a twisted conformation and the other five-membered rings adopt envelope conformations with the spiro C atoms as the flap atoms. The naphthalene ring system of the dihydroacenaphthylene group forms dihedral angles of 89.2 (9) and 75.5 (6)° with the pyrrolidine and indole rings, respectively. The pyrrolidine ring makes a dihedral angle of 80.1 (9)° with the indole ring. In the crystal, molecules are linked by weak C—H...O hydrogen bonds, forming chains along theb-axis direction.


2013 ◽  
Vol 69 (11) ◽  
pp. o1671-o1671 ◽  
Author(s):  
Channappa N. Kavitha ◽  
Jerry P. Jasinski ◽  
Brian J. Anderson ◽  
H. S. Yathirajan ◽  
Manpreet Kaur

In the title compound, C12H16N2O2, the piperazine ring has a chair conformation. The dihedral angle between the mean planes of the benzene ring and the acetyl group is 48.7 (1)°. In the crystal, molecules are linkedviaO—H...O hydrogen bonds, forming chains propagating along [010].


2013 ◽  
Vol 69 (12) ◽  
pp. o1802-o1803 ◽  
Author(s):  
M. Umadevi ◽  
V. Saravanan ◽  
R. Yamuna ◽  
A. K. Mohanakrishnan ◽  
G. Chakkaravarthi

In the title compound, C18H16BrNO3S, the dihedral angle between the phenyl ring and the indole ring system is 89.91 (11)°. The molecular structure features weak C—H...O and C—H...Br hydrogen bonds. In the crystal, molecules are linked by weak C—H...O hydrogen bonds, forming chains along thea-axis direction. The chains are further linked by C—H...π interactions, forming a layer parallel to theabplane.


2015 ◽  
Vol 71 (11) ◽  
pp. o807-o808
Author(s):  
K. Chandra Kumar ◽  
V. Umesh ◽  
T. K. Madhura ◽  
B. M. Rajesh ◽  
Chandra

In the title compound, C15H15FN2OS, the dihedral angle between the planes of the benzothiophene ring system and the fluorobenzene ring is 3.74 (14)°. The six-membered ring of the benzothiophene moiety adopts a half-chair conformation. The molecular conformation is consolidated by intramolecular N—H...F and N—H...O hydrogen bonds. In the crystal, molecules are linked by N—H...O hydrogen bonds, generatingC(6) [001] chains.


IUCrData ◽  
2016 ◽  
Vol 1 (1) ◽  
Author(s):  
E. A. Jithesh Babu ◽  
K. S. Vinay Kumar ◽  
Chandra ◽  
M. P. Sadashiva ◽  
M. Mahendra

In the molecule of the title compound, C16H13NO4S, the mean plane of the indole ring system and that of the methoxyphenyl ring, which are bridged by a sulfonyl group, are inclined at a dihedral angle of 88.98 (9)°. The crystal structure is stabilized by intermolecular C—H...O hydrogen bonds.


IUCrData ◽  
2017 ◽  
Vol 2 (1) ◽  
Author(s):  
I. Ayswariya ◽  
P. Rajalakshmi ◽  
R.V. Krishnakumar ◽  
N. Srinivasan

In the title compound, C15H15FO3, the dihedral angle between the mean plane through all the non-H atoms of the dioxolane ring with those of the rest of the atoms of the chromene ring system, including the substituent F atom, is 81.1 (1)°. The pyran ring has an envelope conformation with the O atom as the flap. The cyclohexene ring has a half-chair conformation, while the dioxolane ring has a twisted conformation on an –O—CH2– bond. In the crystal, molecules are linkedviaC—H...O hydrogen bonds, forming chains along [100]. The chains are linked by C—H...π interactions, involving the fluorobenzene ring, forming layers parallel to theacplane.


IUCrData ◽  
2018 ◽  
Vol 3 (3) ◽  
Author(s):  
Jianwei Wang ◽  
Caixia Yuan

In the title compound, C21H14N6, the pyridine ring and two pyrazine rings are nearly coplanar [dihedral angles = 2.03 (7) and 1.60 (7)°], while the dihedral angle between the indole ring system and the pyridine ring is 29.04 (6)°. In the crystal, molecules are linked by N—H...N hydrogen bonds, which generate [-110] chains. The packing is consolidated by C—H...N hydrogen bonds and aromatic π–π stacking, generating a three-dimensional network.


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