Q.What will happen during the electrolysis of aqueous solution of by using platinum electrodes ? (A) Cu will deposit at Anode (B) gas will be released at cathode (C) gas will be released at anode (D) gas will be released at anode
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Start your 14-day free trial to unlock the full solution →In the electrolysis of aqueous with inert platinum electrodes, ions are reduced to Cu metal at the cathode, and ions are oxidised to gas at the anode. The correct option is (D).
Why this approach works — the core idea
Electrolysis is about forcing a non-spontaneous redox reaction using electrical energy. At the cathode (negative electrode), reduction happens — species gain electrons. At the anode (positive electrode), oxidation happens — species lose electrons.
The tricky part with aqueous solutions is that water itself can compete with the dissolved ions. You have to compare the standard reduction potentials of all possible reactions to decide which one actually occurs at each electrode. The rule is simple: at the cathode, the species with the higher (more positive) reduction potential gets reduced first. At the anode, the species with the lower (more negative) reduction potential gets oxidised first (or equivalently, the one that is easiest to oxidise).
For aqueous , the ions present are and , plus and from water's autoionisation.
Standard reduction potentials (at 298 K, 1 M, 1 atm):
Step-by-step reasoning
1. What happens at the cathode?
The cathode is negative, so it attracts positive ions ( and from water). Two reduction reactions are possible:
- with
- with
The copper reduction has a much higher (more positive) reduction potential. That means is far more willing to accept electrons than water is. So copper metal deposits on the cathode, and no hydrogen gas is produced.
A common mistake is to assume that because water can be reduced to , it always happens. But has a significantly higher reduction potential, so it gets reduced first. Hydrogen gas evolution at the cathode would only occur if were absent or present in very low concentration.
2. What happens at the anode?
The anode is positive, so it attracts negative ions ( and from water). Two oxidation reactions are possible:
- — this is the reverse of the reduction, so its oxidation potential is (the negative of the reduction potential).
- — this is the reverse of the reduction, so its oxidation potential is .
When comparing oxidation reactions, the one with the less negative (higher) oxidation potential occurs more readily. Here, is greater than , so you might think water oxidation to should happen first.
But there's a catch: the evolution reaction involves 4 electrons and has a significant overpotential on platinum electrodes. Overpotential is an extra voltage needed to overcome the kinetic barrier for a reaction to occur at a practical rate. On platinum, the overpotential for oxygen evolution is substantial (around 0.4–0.6 V), while for chlorine evolution it is very small. …
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