Exploring the nitric oxide dioxygenation (NOD) reactions of manganese–peroxo complexes†
Abstract
Here, we report the nitric oxide dioxygenation (NOD) reactions of two MnIII–peroxo (MIII–O22−) complexes, [(3PYENMe)MnIII(O22−)]+ (1) and [(N3PY)MnIII(O22−)]+ (2), bearing pentadentate ligands. Complexes 1 and 2 give MnII–nitrate (MnII–NO3−) complexes (3 and 4) when reacted with nitric oxide (NO), respectively. The mechanistic study explored by using 2,4-di-tert-butylphenol (2,4-DTBP) suggested that the NOD reaction of 1 and 2 occurs via a presumed Mn–peroxynitrite ([Mn–PN]+, [Mn–ONOO−]+) intermediate. Tracking the source of N atoms using 15NO revealed that the N-atoms in MnII–NO3− (3 and 4) are derived from the 15NO moiety. Furthermore, we have explored the MIII–O22− regeneration from NOD products (3 and 4), and we have observed the formation of MIII–O22− complexes (1 and 2) upon treatment with KO2 or H2O2/triethylamine (TEA), respectively.