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Question of 135

Q.(a) (CH3)3-C-O-CH3 --HI--> A + B. Identify compounds 'A' and 'B'.

(b) Between ethanol and phenol, which is more acidic, and why?
(c) Write a short note on: the Reimer-Tiemann reaction. (1+1+2=4)
Tripura TbseHigher Secondary (+2 Stage) Examination 2025Subjective· 4mImportance★★★★★
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(a) Unsymmetrical ethers with HI cleave via the more stable carbocation pathway. (b) Phenol beats ethanol in acidity because its conjugate base is resonance-stabilised. (c) The Reimer-Tiemann reaction installs an ortho -CHO on phenol through a dichlorocarbene intermediate.

(a) (CH3)3C-O-CH3 + HI.

The ether oxygen is first protonated by HI. Cleavage of the C-O bond can occur on either side; the pathway that is favoured is the one giving the more stable carbocation, since with a tertiary alkyl group present the mechanism is SN1. The bond to the tertiary carbon breaks heterolytically, releasing the more stable tert-butyl carbocation, (CH3)3C+, while the oxygen (still bearing the methyl group and its extra H) leaves as methanol. Iodide ion then attacks the carbocation:

(CH3)3C-O(+H)-CH3 -> (CH3)3C+ + CH3OH, then (CH3)3C+ + I- -> (CH3)3C-I

So A = tert-butyl iodide, (CH3)3CI, and B = methanol, CH3OH.

(b) Ethanol vs phenol acidity.

Phenol is more acidic than ethanol. When phenol loses a proton, the resulting phenoxide ion has its negative charge delocalised into the aromatic ring through resonance (the charge is spread over the ortho and para ring carbons as well as the oxygen), which stabilises the phenoxide ion considerably. When ethanol loses a proton, the resulting ethoxide ion has no such delocalisation available - the negative charge stays localised on oxygen, and is if anything slightly destabilised by the electron-donating (+I) ethyl group. Because phenol's conjugate base is much better stabilised, phenol is the stronger acid (pKa of phenol ~10 vs ethanol ~16).

(c) Reimer-Tiemann reaction. …

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