Q.(a) Discuss the catalytic properties of the first row transition elements. [3]
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Start your 14-day free trial to unlock the full solution →Transition metals catalyse via variable oxidation state + surface adsorption; heating releases oxygen. OR: Werner's three postulates explain coordination compounds; has two ionization isomers differing in which group is coordinated vs. outside as counter-ion.
(a) Catalytic properties of first row transition elements:
Transition elements are effective catalysts mainly for two reasons: (i) they exhibit MULTIPLE (variable) oxidation states, which lets them form unstable intermediate compounds/complexes with the reactants, opening up an alternate reaction pathway of lower activation energy, and then revert to their original state, e.g. in the Contact process (), (with promoter) in the Haber process for ammonia synthesis, and finely divided in catalytic hydrogenation of oils; (ii) they have large surface area and VACANT d-orbitals available on their metal surface, allowing reactant molecules to be adsorbed on the metal surface, weakening their bonds and thus facilitating reaction.
(b) on heating:
On strong heating, potassium dichromate decomposes, releasing oxygen gas and forming potassium chromate and chromium(III) oxide:
OR — (a) Werner's postulates of coordination theory:
- Metals possess two types of valency: primary (ionisable) valency, satisfied by negative ions, and secondary (non-ionisable) valency, satisfied by neutral molecules or negative ions (ligands).
- Every metal ion has a fixed number of secondary valencies — this fixed number is what we now call the coordination number. …
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