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Building inorganic supramolecular architectures using principles adopted from the organic solid state (CROSBI ID 245178)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Đaković, Marijana ; Soldin, Željka ; Kukovec, Boris-Marko ; Kodrin, Ivan ; Aakeroy, Christer B. ; Baus, Nea ; Rinkovec, Tamara Building inorganic supramolecular architectures using principles adopted from the organic solid state // IUCrJ, 5 (2018), 1; 13-21. doi: 10.1107/S2052252517015494

Podaci o odgovornosti

Đaković, Marijana ; Soldin, Željka ; Kukovec, Boris-Marko ; Kodrin, Ivan ; Aakeroy, Christer B. ; Baus, Nea ; Rinkovec, Tamara

engleski

Building inorganic supramolecular architectures using principles adopted from the organic solid state

In order to develop transferable and practical avenues for the assembly of coordination complexes into architectures with specific dimensionality, a strategy utilizing ligands capable of simultaneous metal coordination and selfcomplementary hydrogen bonding is presented. The three ligands used, 2(1H)- pyrazinone, 4(3H)-pyrimidinone and 4(3H)-quinazolinone, consistently deliver the required synthetic vectors in a series of Cd(II) coordination polymers, allowing for reproducible supramolecular synthesis that is insensitive to the different steric and geometric demands from potentially disruptive counterions. In all nine crystallographically characterized compounds presented here, directional intermolecular N—H...O hydrogen bonds between ligands on adjacent complex building blocks drive the assembly and orientation of discrete building blocks into largely predictable topologies. Furthermore, whether the solids are prepared from solution or through liquid-assisted grinding, the structural outcome is the same, thus emphasizing the robustness of the synthetic protocol. The details of the molecular recognition events that take place in this series of compounds have been clearly delineated and rationalized in the context of calculated molecular electrostatic potential surfaces.

crystal engineering ; hydrogen bonds ; electrostatic potential ; synthons ; coordination compounds.

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Podaci o izdanju

5 (1)

2018.

13-21

objavljeno

2052-2525

2052-2525

10.1107/S2052252517015494

Povezanost rada

Kemija

Poveznice
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