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  2. Electron transport chain - Wikipedia

    en.wikipedia.org/wiki/Electron_transport_chain

    The electron transport chain comprises an enzymatic series of electron donors and acceptors. Each electron donor will pass electrons to an acceptor of higher redox potential, which in turn donates these electrons to another acceptor, a process that continues down the series until electrons are passed to oxygen, the terminal electron acceptor in ...

  3. Charge-transfer complex - Wikipedia

    en.wikipedia.org/wiki/Charge-transfer_complex

    The assembly consists of two molecules that self-attract through electrostatic forces, i.e., one has at least partial negative charge and the partner has partial positive charge, referred to respectively as the electron acceptor and electron donor. In some cases, the degree of charge transfer is "complete", such that the CT complex can be ...

  4. Oxidoreductase - Wikipedia

    en.wikipedia.org/wiki/Oxidoreductase

    In this example, A is the reductant (electron donor) and B is the oxidant (electron acceptor). In biochemical reactions, the redox reactions are sometimes more difficult to see, such as this reaction from glycolysis: P i + glyceraldehyde-3-phosphate + NAD + → NADH + H + + 1,3-bisphosphoglycerate

  5. Oxidative phosphorylation - Wikipedia

    en.wikipedia.org/wiki/Oxidative_phosphorylation

    Reduction of coenzyme Q from its ubiquinone form (Q) to the reduced ubiquinol form (QH 2). The electron transport chain carries both protons and electrons, passing electrons from donors to acceptors, and transporting protons across a membrane. These processes use both soluble and protein-bound transfer molecules.

  6. Adiabatic electron transfer - Wikipedia

    en.wikipedia.org/wiki/Adiabatic_electron_transfer

    Figure 1 sketches the basic elements of adiabatic electron-transfer theory. Two chemical species (ions, molecules, polymers, protein cofactors, etc.) labelled D (for “donor”) and A (for “acceptor”) become a distance R apart, either through collisions, covalent bonding, location in a material, protein or polymer structure, etc. A and D ...

  7. Protein adsorption - Wikipedia

    en.wikipedia.org/wiki/Protein_adsorption

    Charge-transfer interactions are also important in protein stabilization and surface interaction. In general donor-acceptor processes, one can think of excess electron density being present which can be donated to an electrophilic species. In aqueous media, these solute interactions are primarily due to pi orbital electron effects. [11]

  8. Photosystem I - Wikipedia

    en.wikipedia.org/wiki/Photosystem_I

    The two modified chlorophyll molecules are early electron acceptors in PSI. They are present one per PsaA/PsaB side, forming two branches electrons can take to reach F x. A 0 accepts electrons from P700*, passes it to A 1 of the same side, which then passes the electron to the quinone on the same side. Different species seems to have different ...

  9. Lithotroph - Wikipedia

    en.wikipedia.org/wiki/Lithotroph

    In chemolithotrophs, the compounds – the electron donors – are oxidized in the cell, and the electrons are channeled into respiratory chains, ultimately producing ATP. The electron acceptor can be oxygen (in aerobic bacteria), but a variety of other electron acceptors, organic and inorganic, are also used by various species.