In the title compound, C(15)H(14)N(2)O(4), (I), the mol-ecule lies on a twofold rotation axis which passes through the central C atom of the aliphatic chain, giving one half-mol-ecule per asymmetric unit. The structure is a monoclinic polymorph of the triclinic structure previously reported [Brito, Vallejos, Bolte & López-Rodríguez (2010). Acta Cryst. E66, o792], (II). The most obvious difference between them is the O/C/C/C-O/C/C/C torsion angle [58.2 (7)° in (I) and 173.4 (3)/70.2 (3)° in (II) for GG and TG conformations, respectively]. Another important difference is observed in the dihedral angle between the planes of the aromatic rings [86.49 (7)° for (I) and 76.4 (3)° for (II)]. The crystal structure features a weak π-π inter-action [centroid-centroid distance = 4.1397 (10)Å]; this latter kind of inter-action is not evident in the triclinic polymorph.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3051592PMC
http://dx.doi.org/10.1107/S1600536810054309DOI Listing

Publication Analysis

Top Keywords

monoclinic modification
4
modification propane-13-diyl
4
propane-13-diyl bis-pyridine-3-carboxyl-ate
4
bis-pyridine-3-carboxyl-ate title
4
title compound
4
compound c15h14n2o4
4
c15h14n2o4 mol-ecule
4
mol-ecule lies
4
lies twofold
4
twofold rotation
4

Similar Publications

Four new Np(V) perchlorate complexes of the composition [NpO(HO)]ClO (orthorhombic) (), [(NpO)(ClO)(HO)]ClO·HO (), [(NpO)(UO)(HO)](ClO) (), and [(NpO)Cl(HO)]ClO·2HO () have been synthesized and structurally characterized. The structure of previously known monoclinic modification of NpOClO·4HO () has been determined at 100 K. The coordination environment of Np and U atoms in compounds - is pentagonal bipyramids.

View Article and Find Full Text PDF

Piperine (PPN) is a natural compound with an anti-inflammation effect and low solubility. Hence, some molecular modifications have improved its solid-state character, including cocrystal formation. However, the salt structure has yet to be widely studied.

View Article and Find Full Text PDF

Up to 17 GPa, the crystalline phases of N2 are characterized by pronounced orientational disorder, whereas the higher-pressure phases of molecular N2 are ordered. This raises the question about long-term relaxation of orientational disorder within the low- to intermediate-pressure regime. Here, this question is addressed by comparing synthetic with natural, chemically pure, solid N2 that resides as inclusions in diamonds at 300 K for about 108 years at pressures up to 11 GPa.

View Article and Find Full Text PDF

Crystal Structure and Photoluminescence of Two Terbium Compounds with Bromobenzoic Acid and Phenanthroline.

J Fluoresc

October 2024

Key Laboratory for Soil Modification and Comprehensive Utilization of Mineral Soil of Inner Mongolia Autonomous Region, Jining Normal University, Wulanchabu, 012000, China.

Two novel Tb(III) ternary complexes, [Tb(Phen)(p-BrBA)] and [TbY(Phen)(p-BrBA)], have been synthesized with p-bromobenzoic acid(p-BrBA) as the primary ligand and 1,10-phenanthroline(Phen) as the secondary ligand. The structures of these complexes are characterized by elemental analysis, IR spectroscopy, UV-vis absorption spectroscopy, thermal analysis (TGA) and single-crystal X-ray diffraction. The crystal structures of the compounds are similar because of similar radii of Tb ion and Y ion.

View Article and Find Full Text PDF

A Comparative Study of a High-Pressure Polymorph of IO and its Ambient-Pressure Modification.

Chemistry

December 2024

Department for General, Inorganic, and Theoretical Chemistry, University of Innsbruck, Innrain 80-82, 6020, Innsbruck, Tyrol, Austria.

A hitherto unknown modification of IO was obtained from high-pressure/high-temperature syntheses in a Walker-type multianvil device at 8 GPa and 250 °C. HP-IO crystallizes in the monoclinic crystal system with space group P2/c (no. 14) with the unit cell parameters a=12.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!