Coordination chemistry of 1,4-bis(carboxymethyl)-1,4,7-triazacyclononane: Synthesis and characterization of mononuclear and binuclear μ-oxo-bridged iron(III) complexes, and a 1D-helical copper(II) chain
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry
Reference55 articles.
1. Syntheses and characterisation of mono- and di-nuclear iron(III) complexes of 1,4,7-triazacyclononane-N-acetate (L). Crystal structures of [FeCl2L] and [Fe2(μ-O)(μ-O2CMe)L2]ClO 4· NaClO4·2H2O
2. Utilization of crown ethers to stabilize the dinuclear μ-oxo bridged iron(iii) aqua ion, [(H2O)5Fe(μ-O)Fe(OH2)5]4+
3. Synthesis and characterization of (.mu.-hydroxo)bis(.mu.-acetato)diiron(II) and (.mu.-oxo)bis(.mu.-acetato)diiron(III) 1,4,7-trimethyl-1,4,7-triazacyclononane complexes as models for binuclear iron centers in biology; properties of the mixed valence diiron(II,III) species
4. Crystal Structure, Spectroscopy and Magnetic Properties of a Novel FeIIIUnsymmetric Tetranuclear Complex: A Model for met-Hemerythrin
5. An Octanuclear FeIII Compound Featuring a New Type of Double Butterfly Iron-Oxo Core
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1. Optimization of a 1,4,7‐Triazacyclononane‐1,4‐diacetic acid (NODA) Derivative Radiofluorination by Al18F Complexation Using a Design of Experiments Approach;Chemistry – A European Journal;2023-10-31
2. On the dissociation pathways of copper complexes relevant as PET imaging agents;Journal of Inorganic Biochemistry;2022-11
3. Preparation, crystal structures and magnetic properties of hetero- and homo-metallic coordination polymers with triazacyclononane derivatives bearing propionic acid pendant arms;Transition Metal Chemistry;2016-11-11
4. In vitro and in vivo activity of a new unsymmetrical dinuclear copper complex containing a derivative ligand of 1,4,7-triazacyclononane: catalytic promiscuity of [Cu2(L)Cl3];Dalton Transactions;2013
5. Accessibility and Selective Stabilization of the Principal Spin States of Iron by Pyridyl versus Phenolic Ketimines: Modulation of the 6A1 ↔ 2T2 Ground-State Transformation of the [FeN4O2]+ Chromophore;Inorganic Chemistry;2012-07-18
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