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  2. Electrochemistry - Wikipedia

    en.wikipedia.org/wiki/Electrochemistry

    For example, gaseous oxygen (O 2) and hydrogen (H 2) can be combined in a fuel cell to form water and energy, typically a combination of heat and electrical energy. [25] Conversely, non-spontaneous electrochemical reactions can be driven forward by the application of a current at sufficient voltage.

  3. Electrochemical potential - Wikipedia

    en.wikipedia.org/wiki/Electrochemical_potential

    In electrochemistry, the electrochemical potential of electrons (or any other species) is the total potential, including both the (internal, nonelectrical) chemical potential and the electric potential, and is by definition constant across a device in equilibrium, whereas the chemical potential of electrons is equal to the electrochemical ...

  4. Electrochemical reaction mechanism - Wikipedia

    en.wikipedia.org/wiki/Electrochemical_reaction...

    The electrochemical mechanisms of electrocatalytic processes are a common research subject for various fields of chemistry and associated sciences. This is important to the development of water oxidation and fuel cells catalysts. For example, half the water oxidation reaction is the reduction of protons to hydrogen, the subsequent half reaction.

  5. Electrochemical kinetics - Wikipedia

    en.wikipedia.org/wiki/Electrochemical_kinetics

    Electrochemical kinetics is the field of electrochemistry that studies the rate of electrochemical processes. This includes the study of how process conditions, such as concentration and electric potential, influence the rate of oxidation and reduction reactions that occur at the surface of an electrode, as well as an investigation into electrochemical reaction mechanisms.

  6. Electron transfer - Wikipedia

    en.wikipedia.org/wiki/Electron_transfer

    In such cases, the electron transfer is termed intermolecular electron transfer. A famous example of an inner sphere ET process that proceeds via a transitory bridged intermediate is the reduction of [CoCl(NH 3) 5] 2+ by [Cr(H 2 O) 6] 2+. [5] [6] In this case, the chloride ligand is the bridging ligand that covalently connects the redox ...

  7. Faraday efficiency - Wikipedia

    en.wikipedia.org/wiki/Faraday_efficiency

    These losses appear as heat and/or chemical byproducts. An example can be found in the oxidation of water to oxygen at the positive electrode in electrolysis. Hydrogen peroxide can also be produced. [2] The fraction of electrons so diverted represent a faradaic loss and vary in different apparatus.

  8. Electrochemical cell - Wikipedia

    en.wikipedia.org/wiki/Electrochemical_cell

    Electrochemical cells that generate an electric current are called voltaic or galvanic cells and those that generate chemical reactions, via electrolysis for example, are called electrolytic cells. [2] Both galvanic and electrolytic cells can be thought of as having two half-cells: consisting of separate oxidation and reduction reactions.

  9. Polarization (electrochemistry) - Wikipedia

    en.wikipedia.org/.../Polarization_(electrochemistry)

    In electrochemistry, polarization is a collective term for certain mechanical side-effects (of an electrochemical process) by which isolating barriers develop at the interface between electrode and electrolyte. These side-effects influence the reaction mechanisms, as well as the chemical kinetics of corrosion and metal deposition.