Abstract

A new 24-membered octaaza macrocyclic ligand ( L) containing two methoxybenzyl pendant arms has been synthesized. While its complexation with MnCl 2 in the presence of perchlorate anion yielded a mononuclear complex, [Mn L](ClO 4) 2, a similar reaction in the absence of perchlorate anion led to an endocyclic dinuclear complex, [Mn 2 LCl 4]. In [Mn L](ClO 4) 2, the Mn(II) ion was tightly surrounded by the N8-macrocyclic ligand to form a distorted bicapped octahedral geometry. In [Mn 2 LCl 4], the endomacrocyclic bound two manganese ions are bridged via two chloro ligands to form a bis-(μ-chloro) Mn 2Cl 2 diamond core. Each Mn(II) ion in the dinuclear complex is additionally ligated with a diaminomethyl pyridinyl nitrogen donor atom of the ligand and a terminal chloride, which leads to a distorted octahedral geometry of the N 3Cl 3 donor set. An EPR study of [Mn L](ClO 4) 2 in DMSO or DMF showed an unprecedented Mn(II) EPR signal spreading from ∼100 G over ∼7000 G with 55Mn nuclear hyperfine structures at 600–1800 G. For [Mn 2 LCl 4], a typical high-spin Mn(II) signal was observed near g = ∼2 with an average 55Mn nuclear hyperfine coupling constant of 91 G and small ZFS.

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