2021RSC AdvancesOpen access

Ru III (edta) complexes as molecular redox catalysts in chemical and electrochemical reduction of dioxygen and hydrogen peroxide: inner-sphere versus outer-sphere mechanism

Debabrata Chatterjee, Marta Chrzanowska, Anna Katafias, Maria Oszajca, Rudi van Eldik

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Abstract

(edta) complexes is proposed. The role of the coordinated water molecule (by its absence or presence in the primary coordination sphere) in controlling the mechanistic pathways, outer-sphere or inner-sphere, is discussed.

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(edta) complexes is proposed. The role of the coordinated water molecule (by its absence or presence in the primary coordination sphere) in controlling the mechanistic pathways, outer-sphere or inner-sphere, is discussed.

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Available abstract

(edta) complexes is proposed. The role of the coordinated water molecule (by its absence or presence in the primary coordination sphere) in controlling the mechanistic pathways, outer-sphere or inner-sphere, is discussed.

Key concepts: Inner sphere electron transfer, Chemistry, Hydrogen peroxide, Outer sphere electron transfer, Coordination sphere, Aqueous solution, Pyrazine, Redox

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Ru III (edta) complexes as molecular redox catalysts in chemical and electrochemical reduction of dioxygen and hydrogen peroxide: inner-sphere versus outer-sphere mechanism — Research Paper | ScholarLens