2019Unpublished venueRequires access

Proton‐Coupled Electron Transfers

Jean‐Michel Savéant, Cyrille Costentin

Open publisher page 3 citations

Abstract

The coupling between electron and proton transfers has a long experimental and theoretical history in chemistry and biochemistry. Proton-coupled electron transfer (PCET) reactions play a critical role in a wide range of biological processes, including enzyme reactions, photosynthesis, and respiration. This chapter details the mechanism analysis of PCET reactions that mainly consists in establishing whether proton transfer and electron transfers are concerted or stepwise as well as describing the kinetic characteristics of the concerted proton and electron transfer (CPET) reactions. It illustrates the intrinsic parameters of concerted pathways by experimental examples. The chapter ends with a discussion on the association between PCET and heavy-atoms electron-transfer/bond-breaking (forming) reaction, highlighting reaction pathways in which electron transfer, proton transfer, and bond-breaking (forming) are all concerted. Associating proton transfer to electron transfer might be additionally profitable to break bonds because of the thermodynamic advantage of concerted pathways over stepwise pathways.

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What this paper is about

The coupling between electron and proton transfers has a long experimental and theoretical history in chemistry and biochemistry. Proton-coupled electron transfer (PCET) reactions play a critical role in a wide range of biological processes, including enzyme reactions, photosynthesis, and respiration. This chapter details the mechanism analysis of PCET reactions that mainly consists in establishing whether proton transfer and electron transfers are concerted or stepwise as well as describing the kinetic characteristics of the concerted proton and electron transfer (CPET) reactions. It illustrates the intrinsic parameters of concerted pathways by experimental examples. The chapter ends with a discussion on the association between PCET and heavy-atoms electron-transfer/bond-breaking (forming) reaction, highlighting reaction pathways in which electron transfer, proton transfer, and bond-breaking (forming) are all concerted. Associating proton transfer to electron transfer might be additionally profitable to break bonds because of the thermodynamic advantage of concerted pathways over stepwise pathways.

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Available abstract

The coupling between electron and proton transfers has a long experimental and theoretical history in chemistry and biochemistry. Proton-coupled electron transfer (PCET) reactions play a critical role in a wide range of biological processes, including enzyme reactions, photosynthesis, and respiration. This chapter details the mechanism analysis of PCET reactions that mainly consists in establishing whether proton transfer and electron transfers are concerted or stepwise as well as describing the kinetic characteristics of the concerted proton and electron transfer (CPET) reactions. It illustrates the intrinsic parameters of concerted pathways by experimental examples. The chapter ends with a discussion on the association between PCET and heavy-atoms electron-transfer/bond-breaking (forming) reaction, highlighting reaction pathways in which electron transfer, proton transfer, and bond-breaking (forming) are all concerted. Associating proton transfer to electron transfer might be additionally profitable to break bonds because of the thermodynamic advantage of concerted pathways over stepwise pathways.

Key concepts: Proton-coupled electron transfer, Electron transfer, Proton, Chemical physics, Chemistry, Concerted reaction, Electron transport chain, Electron

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