1997
DOI: 10.1039/a607658k
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Effect of ring size in macrocyclic dinuclear manganese(II) complexes upon their structure, properties and reactivity towards H2O2

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Cited by 39 publications
(30 citation statements)
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(18 reference statements)
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“…This signal declined to the one of the stable Mn III 2 complex once all H 2 O 2 had been consumed. Similar spectra had previously been observed in the catalytic [15,16,22,23,25].…”
Section: Uv-vis and Epr Spectroscopiessupporting
confidence: 78%
“…This signal declined to the one of the stable Mn III 2 complex once all H 2 O 2 had been consumed. Similar spectra had previously been observed in the catalytic [15,16,22,23,25].…”
Section: Uv-vis and Epr Spectroscopiessupporting
confidence: 78%
“…20 nm superimposed the band at 460 nm. Similar multiplets had previously been observed as intermediate in the catalytic disproportionation of H 2 O 2 by several dimanganese complexes, and have been assigned to an oxo-to-manganese LMCT coupled to the m Mn@O vibration [45][46][47][48][49]. Once O 2 evolution had ceased, this multiplet, responsible for the pink color of the solution, declined to the band at 460 nm (e 460 = 6500 M À1 cm À1 , based on [L 2 ]).…”
Section: Reaction Studies In Dmfmentioning
confidence: 79%
“…One example involves a series of dinucleating macrocycles containing two phenolate entities (Figure 8, b). An electrochemical study of their Mn 2 II complexes indicated that for most of them the corresponding stable mixed‐valent species Mn 2 II,III could be obtained by electrolysis 115,116. A more detailed electrochemical behaviour has been reported for complexes formed with the unsymmetrical hexadentate phenol‐based ligand described in Figure 9 (a) 117…”
Section: Complexes With Amino Ligands Containing One or More Phenomentioning
confidence: 95%