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NCERT Exemplar · Q27

Q.Out of Cu2Cl2Cu_2Cl_2 and CuCl2CuCl_2, which is more stable and why?

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The stability of copper chlorides depends on the relative ease of reduction of Cu²⁺ vs Cu⁺. CuCl2CuCl_2 is more stable in aqueous solution because Cu⁺ disproportionates into Cu²⁺ and Cu, but Cu2Cl2Cu_2Cl_2 (CuCl) is stabilised in the solid state due to its insolubility and lattice energy.

Concept and Intuition

The question asks you to compare the stability of two copper chlorides: Cu2Cl2Cu_2Cl_2 (copper(I) chloride, also written as CuCl) and CuCl2CuCl_2 (copper(II) chloride). Stability here refers to thermodynamic stability under standard conditions — which compound is less likely to decompose or undergo a spontaneous redox change.

The key lies in the standard reduction potentials of copper. Copper has two common oxidation states: +1 (cuprous) and +2 (cupric). The standard reduction potentials are:

Cu2++e−→Cu+E∘=+0.153 VCu++e−→CuE∘=+0.521 V\begin{aligned} \text{Cu}^{2+} + e^- &\rightarrow \text{Cu}^+ \quad E^\circ = +0.153\,\text{V} \\ \text{Cu}^+ + e^- &\rightarrow \text{Cu} \quad E^\circ = +0.521\,\text{V} \end{aligned}

From these, you can calculate the potential for the disproportionation of Cu⁺:

2Cu+→Cu2++Cu2\text{Cu}^+ \rightarrow \text{Cu}^{2+} + \text{Cu}

The cell potential for this reaction is E∘=0.521−0.153=+0.368 VE^\circ = 0.521 - 0.153 = +0.368\,\text{V}. A positive E∘E^\circ means the reaction is spontaneous — Cu⁺ ions in aqueous solution tend to disproportionate into Cu²⁺ and metallic copper. This is why Cu⁺ is generally unstable in water.

However, the story changes when we consider the solid compounds. Cu2Cl2Cu_2Cl_2 is a white solid that is insoluble in water. Its insolubility drastically lowers the concentration of Cu⁺ ions in solution, shifting the equilibrium and preventing disproportionation. In contrast, CuCl2CuCl_2 is soluble and exists as stable Cu²⁺ ions in solution.

Step-by-Step Reasoning

  1. Check the aqueous stability of Cu⁺ vs Cu²⁺ Using the standard reduction potentials, we find that Cu⁺ spontaneously disproportionates in water:

2Cu+→Cu2++CuE∘=+0.368 V2\text{Cu}^+ \rightarrow \text{Cu}^{2+} + \text{Cu} \quad E^\circ = +0.368\,\text{V}

This means that in solution, Cu⁺ is not stable — it converts to Cu²⁺ and Cu metal. Cu²⁺, on the other hand, has no such tendency; it is the stable oxidation state in water.

  1. Consider the solid state: solubility and lattice energy

    Cu2Cl2Cu_2Cl_2 is a covalent solid with low solubility in water (its solubility product KspK_{sp} is very small). This insolubility means that even if a tiny amount of Cu⁺ enters solution, the equilibrium is heavily shifted toward the solid. The solid itself is stable because the lattice energy and covalent bonding hold the Cu⁺ ions in place, preventing them from disproportionating.

    CuCl2CuCl_2 is also stable as a solid, but it dissolves readily to give Cu²⁺ ions. In the solid state, both compounds are stable, but the question likely refers to stability under normal conditions (e.g., in the presence of water or air).

  2. Compare the two compounds directly …

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