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The Electrical Contacting of Mediator-modified Enzymes

Chiral Monolayer-immobilized Electron-transfer Mediators [Pg.569]

The concept of enantioselective electrical contacting of redox enzymes and electrode surfaces was further developed by the organization of a chiral [Pg.569]

The chemical modification of redox enzymes with electron relay groups can enable nondiflusional M ET, often referred to as the electrical wiring of the proteins [66-69] (Eig. 6a). The covalent attachment of electron-relay units at the protein periphery and irmer sites yields short interrelay electron-transfer distances. Electron hopping or tunneling between the periphery and the active site enables electrical communication between [Pg.569]

Dissolved Redox Enzymes Functionalized with Electron-transfer Mediators [Pg.570]

GOx has been covalently modified with ferrocene electron-relay groups by the carbodiimide coupling of ferrocene [Pg.570]


See other pages where The Electrical Contacting of Mediator-modified Enzymes is mentioned: [Pg.569]    [Pg.569]    [Pg.571]    [Pg.573]   


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Electrical contacts

Enzyme mediator-modified

Enzyme modifiers

Enzyme-mediated

Modified Enzymes

Modifiers of enzymes

The Enzymes

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