18.3
A spontaneous redox reaction generates electricity, which can power electrical devices. But how does it work?
Consider the redox reaction between copper and a silver nitrate solution. When placed in one vessel, the copper is oxidized to cuprous ions, while the silver ions are reduced to a silver precipitate. Here, the transfer of electrons is direct and does not generate an electric current.
However, when these half-reactions are physically separated and connected via an external circuit, an electric current is observed. This set-up is called an electrochemical cell, further defined as a galvanic or voltaic cell for a spontaneous redox reaction.
A galvanic cell consists of two half-cells containing the half-cell reaction mixtures of a solid metal electrode in its corresponding electrolyte solution. Here, it is copper in aqueous copper nitrate and silver in aqueous silver nitrate.
The separated reactants experience a cell potential, but without an external connection, no reaction or flow of electrons occurs. Once externally connected, the electrons are forced to flow indirectly over the external circuit, enabling the reactions to occur at the respective electrodes.
Per convention, o
Spontaneous Chemical Reactions
Spontaneous redox reactions occur abundantly in nature. The chemical reaction occurring in a disposable AA battery powe…
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