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Coordination polymers and polygons using di-pyridyl-thiadiazole spacers and substituted phosphorodithioato NiII complexes: potential and limitations for inorganic crystal engineering

Coordinatively unsaturated P-substituted dithiophosphonato, dithiophosphato, and dithiophosphito complexes {[Ni((MeO)2PS2)2] (1), [Ni((EtO)2PS2)2] (2), [Ni(MeOdtp)2] (3), and [Ni((Ph)2PS2)2] (4)} were reacted with the bis-functional ligands 3,5-di-(4-pyridyl)-1,2,4-thiadiazole (L1) and 3,5-di-(3-pyr...

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Published in:CrystEngComm 2016-07, Vol.18 (30), p.5620-5629
Main Authors: Aragoni, MCarla, Arca, Massimiliano, Coles, Simon J, Crespo Alonso, Miriam, Coles (nee Huth), Susanne L, Davies, Robert P, Hursthouse, Michael B, Isaia, Francesco, Lai, Romina, Lippolis, Vito
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container_issue 30
container_start_page 5620
container_title CrystEngComm
container_volume 18
creator Aragoni, MCarla
Arca, Massimiliano
Coles, Simon J
Crespo Alonso, Miriam
Coles (nee Huth), Susanne L
Davies, Robert P
Hursthouse, Michael B
Isaia, Francesco
Lai, Romina
Lippolis, Vito
description Coordinatively unsaturated P-substituted dithiophosphonato, dithiophosphato, and dithiophosphito complexes {[Ni((MeO)2PS2)2] (1), [Ni((EtO)2PS2)2] (2), [Ni(MeOdtp)2] (3), and [Ni((Ph)2PS2)2] (4)} were reacted with the bis-functional ligands 3,5-di-(4-pyridyl)-1,2,4-thiadiazole (L1) and 3,5-di-(3-pyridyl)-1,2,4-thiadiazole (L2) to give the coordination polymers (1-4.L1) infinity , (3.L2) infinity , and (4.L2.2C7H8) infinity and the discrete dimers (1-2.L2)2, all characterised by single crystal X-ray diffraction. A comparison of the structures shows that L1 can be exploited for the predictable assembly of undulating chains independent of the nature of the NiII complex, while L2 allows for the existence of different supramolecular constructs ensuing from different ligand conformations deriving from the rotation of the pyridyl rings.
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subjects Assembly
Coordination polymers
Crystals
Diffraction
Dimers
Ligands
Spacers
X-rays
title Coordination polymers and polygons using di-pyridyl-thiadiazole spacers and substituted phosphorodithioato NiII complexes: potential and limitations for inorganic crystal engineering
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