University of Birmingham
Coordination chemistry of cis,trans-1,3,5-Triaminocyclohexane : from mononuclear complexes to supramolecular architectures
Abstract
dc:description.abstractThe coordination chemistry of the rigid, aliphatic triamino ligand \(cis,trans\)-1,3,5-triaminocyclohexane (\(trans\)-tach) is investigated. With closed shell transition metals, \(trans\)-tach forms 1-D {Ag(OTf), ZnCl2} networks and a 3-D {AgNO3} coordination polymer with unprecedented topology. Coordination to the open shell transition metals {NiCl2, Ni(NO3)2, Cu(NO3)2, CuBr2, CuCl2, CuF2, CuSO4} leads to discrete diligand complexes. Protonation of the copper(II) complexes predominantly forms monoligand species, which can aggregate into higher nuclearity clusters. Protonated Cu(NO3)2 and CuBr2 complexes (HNO3 and HBr, respectively) remain mononuclear. CuCl2 and CuBr2 complexes protonated with HCl, however, form trinuclear species comprising trigonal planar μ3-chloro ligands that aggregate into 1-D trinuclear copper(II) chains via hydrogen-bonded interactions. Protonated CuF2 forms a tetranuclear cubane type structure that aggregates into a 3-D nanoporous network via hydrogen-bonded interactions. Protonation of the CuSO4 diligand complex maintains the diligand coordination, forming a 1-D nanoporous network through hydrogen-bonded interactions. Coordination to square planar palladium(II) ions forms all possible coordination motifs (‘Tail’ = monodentate, ‘Head’ = bidentate coordination). ‘Head-to-Head’ coordination results in diligand complexes, ‘Head-to-Tail’ coordination forms cyclic hexanuclear structures and ‘Tail-to-Tail’ coordination leads to a trinuclear species. Extension of \(trans\)-tach via Schiff base formation with pyridine-2-carboxaldehyde results in a hexadonor ligand suitable for metal coordination. Depending on the stoichiometry of the metal, mono- or polynuclear complexes are formed.
Degree
thesis:*- Name dc:type.qualificationname
- d_ph
- Level dc:type.qualificationlevel
- d_ph
- Grantor dc:publisher.institution
- University of Birmingham
- Year dc:date.issued
- 2003
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Seeber, Georg Peter Maria
Subjects
dc:subject × 1Identifiers
dc:identifier.*- Repository record dc:identifier.uri
- http://etheses.bham.ac.uk//id/eprint/95/4/Decl_IS_Seeber03PhD.jpg
- OAI identifier oai:identifier
- oai:etheses.bham.ac.uk:95