| Literature DB >> 30034271 |
Mehdi Elsayed Moussa1, Stefan Welsch1, Matthias Lochner1, Eugenia V Peresypkina2,3, Alexander V Virovets2,3, Manfred Scheer1.
Abstract
A multicomponent approach of the P n ligand complex [Cp*Fe(η5-P5)] (1: Cp* = η5-C5Me5) with the ditopic organic linkers 4,4'-bipyridine (2) or trans-1,2-di(pyridine-4-yl)ethene (3) in the presence of CuI salts of the anions [BF4]- and [PF6]- or the coordinating anion Br-, leads to the formation of four novel organometallic-organic hybrid polymers: the cationic 1D polymeric compounds [Cu4{Cp*Fe(µ3,η5:1:1-P5)}2(µ,η1:1-C10H8N2)4(CH3CN)4] n [BF4]4n (4) and [Cu4{Cp*Fe(µ3,η5:1:1-P5)}2(µ,η1:1-C10H8N2)4(CH3CN)4] n [PF6]4n (5) as well as the unique neutral threefold 2D → 2D interpenetrated networks [Cu2Cl2{Cp*Fe(µ3,η5:1:1-P5)}(µ,η1:1-C12H10N2)] n (6) and [Cu2Br2{Cp*Fe(µ3,η5:1:1-P5)}(µ,η1:1-C10H8N2)] n (7).Entities:
Keywords: Coordination modes; Copper; Ferrocene ligands; Hybrid polymers; Ligand effects
Year: 2018 PMID: 30034271 PMCID: PMC6049892 DOI: 10.1002/ejic.201800112
Source DB: PubMed Journal: Eur J Inorg Chem ISSN: 1434-1948 Impact factor: 2.524
Scheme 1Overview of the reaction of the cyclo‐P5 ligand complex 1 with 2,2′‐bipyridine (2), trans‐1,2‐di(pyridine‐4‐yl)ethene (3) and CuI salts.
Figure 1Section of the 1D cationic polymeric networks (a) 4 and (b) 5, in the solid state. [Cp*FeP5] are shown as cyclo‐P5 moieties; H atoms, counterions as well as solvent molecules are omitted for clarity.
Figure 2(a) The repeating unit of 6. (b) Fragment of a single staggered hcb layer in the 2D neutral polymeric network 6; [Cp*FeP5] are shown as cyclo‐P5 fragments; H atoms are omitted for clarity. (c) Top and d) side simplified views of three interpenetrated layers in 6.16