Literature DB >> 29939736

Low-Spin Fe(III) Macrocyclic Complexes of Imidazole-Appended 1,4,7-Triazacyclononane as Paramagnetic Probes.

Pavel B Tsitovich1, Frédéric Gendron1, Alexander Y Nazarenko2, Brooke N Livesay3, Alejandra P Lopez1, Matthew P Shores3, Jochen Autschbach1, Janet R Morrow1.   

Abstract

Two macrocyclic complexes of 1,4,7-triazacyclononane (TACN), one with N-methyl imidazole pendants, [Fe(Mim)]3+, and one with unsubstituted NH imidazole pendants, [Fe(Tim)]3+, were prepared with a view toward biomedical imaging applications. These low-spin Fe3+ complexes produce moderately paramagnetically shifted and relatively sharp 1H NMR resonances for paraSHIFT and paraCEST applications. The [Fe(Tim)]3+ complex undergoes pH-dependent changes in NMR spectra in solution that are consistent with the consecutive deprotonation of all three imidazole pendant groups at high pH values. N-Methylation of the imidazole pendants in [Fe(Mim)]3+ produces a complex that dissociates more readily at high pH in comparison to [Fe(Tim)]3+, which contains ionizable donor groups. Cyclic voltammetry studies show that the redox potential of [Fe(Mim)]3+ is invariant with pH ( E1/2 = 328 ± 3 mV vs NHE) between pH 3.2 and 8.4, unlike the Fe(III) complex of Tim which shows a 590 mV change in redox potential over the pH range of 3.3-12.8. Magnetic susceptibility studies in solution give magnetic moments of 0.91-1.3 cm3 K mol-1 (μeff value = 2.7-3.2) for both complexes. Solid-state measurements show that the susceptibility is consistent with a S = 1/2 state over the temperature range of 0 to 300 K, with no crossover to a high-spin state under these conditions. The crystal structure of [Fe(Mim)](OTf)3 shows a six-coordinate all-nitrogen bound Fe(III) in a distorted octahedral environment. Relativistic ab initio wave function and density functional theory (DFT) calculations on [Fe(Mim)]3+, some with spin orbit coupling, were used to predict the ground spin state. Relative energies of the doublet, quartet, and sextet spin states were consistent with the doublet S = 1/2 state being the lowest in energy and suggested that excited states with higher spin multiplicities are not thermally accessible. Calculations were consistent with the magnetic susceptibility determined in the solid state.

Entities:  

Year:  2018        PMID: 29939736     DOI: 10.1021/acs.inorgchem.8b01022

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  4 in total

1.  A Class of FeIII Macrocyclic Complexes with Alcohol Donor Groups as Effective T1 MRI Contrast Agents.

Authors:  Eric M Snyder; Didar Asik; Samira M Abozeid; Ariel Burgio; Gage Bateman; Steven G Turowski; Joseph A Spernyak; Janet R Morrow
Journal:  Angew Chem Int Ed Engl       Date:  2019-12-20       Impact factor: 15.336

2.  Comparison of phosphonate, hydroxypropyl and carboxylate pendants in Fe(III) macrocyclic complexes as MRI contrast agents.

Authors:  Elizabeth A Kras; Samira M Abozeid; Waldine Eduardo; Joseph A Spernyak; Janet R Morrow
Journal:  J Inorg Biochem       Date:  2021-08-28       Impact factor: 4.336

3.  CoII Complexes as Liposomal CEST Agents.

Authors:  Samira M Abozeid; Didar Asik; Gregory E Sokolow; Jonathan F Lovell; Alexander Y Nazarenko; Janet R Morrow
Journal:  Angew Chem Int Ed Engl       Date:  2020-05-18       Impact factor: 15.336

Review 4.  Bioimaging agents based on redox-active transition metal complexes.

Authors:  Shan-Shan Xue; Yingbo Pan; Wei Pan; Shujie Liu; Na Li; Bo Tang
Journal:  Chem Sci       Date:  2022-07-27       Impact factor: 9.969

  4 in total

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