Q.(a) What happens when:- Potassium dichromate is heated with conc. Sulphuric Acid and Sodium Chloride (write only chemical reaction). [1]
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Start your 14-day free trial to unlock the full solution →(a) is the classic chromyl chloride test; (b) colour tracks the presence of d electrons available for d-d transitions; (c) transition metals trap small atoms in lattice voids; (d) Cerium's anomalous filling puts one electron each in 4f and 5d.
(a) K2Cr2O7 heated with conc. H2SO4 and NaCl (chromyl chloride test):
This reaction gives orange-red vapours of chromyl chloride:
(b) TiO2 white, TiCl3 coloured — why:
Colour in transition metal compounds arises from d-d electronic transitions (an electron absorbing visible light to jump between split d-orbitals in a ligand field). In TiO2, titanium is present as Ti4+, with electronic configuration — there are no d-electrons, so no d-d transition is possible, and TiO2 appears white (colourless). In TiCl3, titanium is present as Ti3+, with configuration — it has one unpaired d-electron, which can undergo a d-d transition upon absorbing a specific wavelength of visible light, giving TiCl3 its characteristic (violet/purple) colour.
(c) Interstitial compounds of transition elements:
Transition metals have relatively large interstitial voids/spaces within their close-packed crystal lattices. Small non-metal atoms such as H, C, N, or B can occupy these interstitial voids, forming interstitial compounds. These are typically:
- Non-stoichiometric in composition (e.g., , ),
- Harder than the pure metal,
- Retain metallic conductivity and lustre, …
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