Skip to content
Question 62 of 73

Q.(a) Derive an expression for Nernst equation. OR

(b) What are the characteristics of catalyst ?
Tamil Nadu DgeTamil Nadu HSC (DGE) Board 2022Subjective· 5mImportance★★★★★
85% · 62/73 Questions
🔒 Locked · start free trial →

You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.

Start your 14-day free trial to unlock the full solution →

(a) The Nernst equation, E=E∘−(RT/nF)ln⁡QE = E^\circ - (RT/nF)\ln Q, follows from the thermodynamic relations ΔG=ΔG∘+RTln⁡Q\Delta G = \Delta G^\circ + RT\ln Q and ΔG=−nFE\Delta G = -nFE; (b) a catalyst is chemically unchanged, needed in small amount, doesn't shift equilibrium, and is often reaction-specific.

(a) Derivation of the Nernst equation:

For a general electrochemical cell reaction occurring with the transfer of nn moles of electrons, the free energy change under non-standard conditions is related to the standard free energy change by:

ΔG=ΔG∘+RTln⁡Q(1)\Delta G = \Delta G^\circ + RT\ln Q \qquad (1)

where QQ is the reaction quotient for the cell reaction.

The free energy change of a cell reaction is related to the cell EMF by:

ΔG=−nFE(2)\Delta G = -nFE \qquad (2)

and at standard state:

ΔG∘=−nFE∘(3)\Delta G^\circ = -nFE^\circ \qquad (3)

where FF is the Faraday constant (96500 C mol−1C\,mol^{-1}), EE is the cell EMF under the given (non-standard) conditions, and E∘E^\circ is the standard cell EMF.

Substituting (2) and (3) into (1):

−nFE=−nFE∘+RTln⁡Q-nFE = -nFE^\circ + RT\ln Q

Dividing throughout by −nF-nF:

E=E∘−RTnFln⁡QE = E^\circ - \frac{RT}{nF}\ln Q

This is the Nernst equation. At T=298 KT = 298\,K, converting ln⁡\ln to log⁡10\log_{10} (multiply by 2.303) and substituting R=8.314 J K−1mol−1R = 8.314\,J\,K^{-1}mol^{-1}, F=96500 C mol−1F = 96500\,C\,mol^{-1}:

E=E∘−0.0591nlog⁡10QE = E^\circ - \frac{0.0591}{n}\log_{10} Q

For a single electrode reaction Mn++ne−→MM^{n+} + ne^- \rightarrow M, this specialises to:

EMn+/M=EMn+/M∘−0.0591nlog⁡101[Mn+]E_{M^{n+}/M} = E^\circ_{M^{n+}/M} - \frac{0.0591}{n}\log_{10}\frac{1}{[M^{n+}]}

The Nernst equation shows how the electrode/cell potential varies with the concentrations (activities) of the species involved, and it becomes E=E∘E = E^\circ only when all species are at unit concentration/activity (Q=1Q=1).


(b) Characteristics of a catalyst:

  1. A catalyst remains chemically and quantitatively unchanged at the end of the reaction (its mass and chemical composition are the same before and after), even though its physical form may sometimes change (e.g. a large crystal may become powdered).
  2. Only a small quantity of catalyst is generally required to catalyse even a large amount of reactants.
  3. A catalyst cannot initiate a reaction that would not otherwise occur on its own (i.e. it cannot make a thermodynamically non-feasible reaction happen); it only changes the rate of a reaction that is already feasible. …

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.