Electrocatalytic Radical Degradation of 2-Aminoethanol by Nickel, Palladium and Platinum Complexes Bearing Non-Innocent Diarylamido/bis(Phosphine) Pincer Ligand

The electrocatalytic activity of PNP pincer complexes with general formula (PNP)MCl (PNP is bis(2-diisopropylphosphino-4-methylphenyl)amide; M = nickel, palladium and platinum) in the oxidative 2-aminoethanol (MEA, a recalcitrant pollutant) degradation process was studied using cyclic voltammetry me...

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Veröffentlicht in:Applied magnetic resonance 2024-10, Vol.55 (10), p.1323-1333
Hauptverfasser: Mikhailov, Ilya K., Gafurov, Zufar N., Kagilev, Alexey A., Sakhapov, Il’yas F., Morozov, Vladimir I., Ganeev, Gumar R., Khayarov, Khasan R., Kulikova, Vasilisa A., Kirkina, Vladislava A., Gutsul, Evgenii I., Shubina, Elena S., Belkova, Natalia V., Sinyashin, Oleg G., Yakhvarov, Dmitry G.
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Sprache:eng
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Zusammenfassung:The electrocatalytic activity of PNP pincer complexes with general formula (PNP)MCl (PNP is bis(2-diisopropylphosphino-4-methylphenyl)amide; M = nickel, palladium and platinum) in the oxidative 2-aminoethanol (MEA, a recalcitrant pollutant) degradation process was studied using cyclic voltammetry method. Complexes fulfil the requirements typically expected of a redox mediator or catalyst. Their electrochemical oxidation yields the aminyl radical species which unpaired electron is localized on the ligand. The mechanism of interaction of these aminyl radical complexes with MEA was studied using ESR- and NMR-spectroscopy methods. The addition of MEA to the solution of model platinum derivative leads to the disappearance of the ESR signal responsible for the aminyl radical complex, whereas the 31 P{ 1 H} NMR spectrum revealed the regeneration of neutral (PNP)MCl. Palladium derivative was found to be the most effective catalyst of the series with an I cat /I p value of 6.7. Controlled potential electrolysis has allowed us to identify the main products of the catalytic process and to propose the mechanism of the overall process.
ISSN:0937-9347
1613-7507
DOI:10.1007/s00723-024-01710-7