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Synthesis and characterization of two piperazine containing macrocycles and their transition metal complexes

Póta, K., Johnston, H. M., Madarasi, E., Tircsó, G., Green, K. N.: Synthesis and characterization of two piperazine containing macrocycles and their transition metal complexes.
J. Inorg. Biochem. 241, 112124-, (article identifier: 112124), 2023.
Journal metrics:
Q3 Biochemistry
Q2 Inorganic Chemistry
title:
Synthesis and characterization of two piperazine containing macrocycles and their transition metal complexes
authors:
  • Póta Kristóf
  • Johnston, Hannah M.
  • Madarasi Enikő
  • Tircsó Gyula
  • Green, Kayla N.
corresponding author:
Tircsó Gyula
published:
2023
type:
article
genre:
research article/review article
journal:
Journal of Inorganic Biochemistry (ISSN: 0162-0134, 1873-3344)
language:
English
HAC:
Natural Sciences, Chemical Sciences
subjects:
Piperazine, Macrocycle, Manganese, Log B, Pyridinophane
abstract:
Rigidification of the ligand scaffolds has been a particular mechanism of interest employed to achieve properties suitable for MRI contrast, catalysis, or other applications of metal complexes. Towards the goal of targeting a 15-anePyN5Pip type ligand, a serendipitous isolation of a 30-anePy2N10Pip2 aza-macrocycle was achieved, instead. X-ray diffraction and determination of pKa events were carried out and compared to 17-anePyN5Pip. Furthermore, the X-ray diffraction of the Cu(II) and Zn(II) complexes of 17-anePyN5Pip was achieved and compared to previous reports of other first-row transition metal derivatives of this ligand. Determination of the log beta with both 30-anePy2N10Pip2 and 17-anePyN5Pip with the divalent Mnsingle bondZn metal-ion series was used to demonstrate the impact that the piperazine ring plays compared to other, less rigid macrocycles reported to date.
projects:
K-134694
DEENK University of Debrecen
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