9.2
Electrochemical cells consist of two half-cells with electrodes immersed in electrolyte solutions. The electrolyte solutions are linked by a salt bridge, and a connected wire enables electron flow, generating an electric current.
A galvanic or voltaic cell generates electricity through a spontaneous internal reaction, whereas an electrolytic cell uses an external current to drive a non-spontaneous reaction.
The Daniell cell is a galvanic cell with a zinc rod in zinc sulfate solution as one half-cell and a copper rod in copper sulfate solution as the second, connected by a salt bridge or separated by a porous barrier.
Closing the circuit with a metal resistor causes zinc to oxidize into Zn2+ ions at the anode, releasing electrons that flow toward the copper cathode. At the cathode, Cu2+ ions are reduced to copper.
These individual processes are half-reactions, and their combination forms the overall redox reaction, responsible for the current generation.
In the Daniell cell, electrons flow from the zinc electrode to the copper electrode, while sulfate ions traverse the barrier from the copper solution to the zinc solution, completing the electrical circuit.
Electrochemical cells are systems that convert chemical energy into electrical energy or use electrical energy to drive chemical reactions. They consi…
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