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Exploring the structural landscape in nicotinamide derivatives and their Cd(II) complexes (CROSBI ID 613744)

Prilog sa skupa u časopisu | sažetak izlaganja sa skupa | međunarodna recenzija

Đaković, Marijana ; Soldin, Željka ; Petrović- Peroković, Kodrin, Ivan ; Popović, Zora Exploring the structural landscape in nicotinamide derivatives and their Cd(II) complexes // Acta crystallographica. Section A, Foundations and advances. 2014. str. C654-C654 doi: 10.1107/S2053273314093541

Podaci o odgovornosti

Đaković, Marijana ; Soldin, Željka ; Petrović- Peroković, Kodrin, Ivan ; Popović, Zora

engleski

Exploring the structural landscape in nicotinamide derivatives and their Cd(II) complexes

Constant need for design of new materials with desired and pre-determined bulk properties necessitates much improved understanding of competition and balance between non-covalent interactions. In order not to rely on serendipity when targeting synthesis of new solids with pre- determined connectivity and topology, as this offer a path towards the design of materials with pre-determined bulk properties, it is imperative to map out the reliability and robustness of supramolecular synthons. In this contribution we want to delineate the effect of the counter ion accommodation in the supramolecular assembly on the synthon formation. We opted for positively charged pyridine-based organic molecules that are encoded with two functionalities, caboxamide and carboxylic acid moieties, which both proved as robust and reliable self-complementary reagents, accompanied with one of the three halide counter ions (Cl, Br, I). The study will thus focus on the competition and hierarchy of supramolecular synthons in organic systems of the ligands themselves as well as in the Cd(II)-containing architectures (upon the ligand coordination) depending on the polarizability of the present halide ion. Furthermore, the most prominent intermolecular contacts in the crystal structures will be visualized by Hirshfeld surface analysis and their contributions to the Hirshfeld surface area will be determined. Bader’s QTAIM (Quantum Theory of Atoms in Molecules) analysis was used to characterize the nature and strength of intermolecular interactions based on the DFT calculations started from X-ray determined geometries. The computationally determined data were compared with the experimental results to get unbiased analysis about the role of specific intermolecular interactions on crystal packing of examined compounds.

nicotinamide derivatives ; supramolecular synthons ; cadmium(II) complexes

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Podaci o prilogu

C654-C654.

2014.

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objavljeno

10.1107/S2053273314093541

Podaci o matičnoj publikaciji

Acta crystallographica. Section A, Foundations and advances

2053-2733

Podaci o skupu

23rd Congress and General Assembly of the International Union of Crystallography

poster

05.08.2014-12.08.2014

Montréal, Kanada

Povezanost rada

Kemija

Poveznice
Indeksiranost