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Worked Examples · Example 6.7

Q.Predict the order of reactivity of the following compounds in SN1S_N1 and SN2S_N2 reactions:

(i) The four isomeric bromobutanes
(ii) C6H5CH2BrC_6H_5CH_2Br, C6H5CH(C6H5)BrC_6H_5CH(C_6H_5)Br, C6H5CH(CH3)BrC_6H_5CH(CH_3)Br, C6H5C(CH3)(C6H5)BrC_6H_5C(CH_3)(C_6H_5)Br
Rajasthan RbseTextbookSubjective· 3mImportance★★★★★
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SN1S_N1 rate follows carbocation stability (3∘>2∘>1∘3^\circ > 2^\circ > 1^\circ, resonance-stabilised benzylic cations winning); SN2S_N2 rate follows the reverse - the least hindered carbon reacts fastest.

Benzylic carbocation resonance
Benzylic carbocation resonance

Part (i): the four isomeric bromobutanes

CH3CH2CH2CH2BrCH_3CH_2CH_2CH_2Br (1-bromobutane, 1∘1^\circ), CH3CH2CHBrCH3CH_3CH_2CHBrCH_3 (2-bromobutane, 2∘2^\circ), (CH3)2CHCH2Br(CH_3)_2CHCH_2Br (1-bromo-2-methylpropane, 1∘1^\circ), (CH3)3CBr(CH_3)_3CBr (2-bromo-2-methylpropane, 3∘3^\circ).

SN1S_N1 (carbocation stability): among the two primary bromides, the carbocation formed from (CH3)2CHCH2Br(CH_3)_2CHCH_2Br is more stable than the one from CH3CH2CH2CH2BrCH_3CH_2CH_2CH_2Br, because of the greater electron-donating inductive effect of the (CH3)2CH−(CH_3)_2CH- group -- so 1-bromo-2-methylpropane is more reactive than 1-bromobutane in SN1S_N1:

2-bromo-2-methylpropane>2-bromobutane>1-bromo-2-methylpropane>1-bromobutane\text{2-bromo-2-methylpropane} > \text{2-bromobutane} > \text{1-bromo-2-methylpropane} > \text{1-bromobutane}

SN2S_N2 (least steric hindrance fastest -- the reverse order):

1-bromobutane>1-bromo-2-methylpropane>2-bromobutane>2-bromo-2-methylpropane\text{1-bromobutane} > \text{1-bromo-2-methylpropane} > \text{2-bromobutane} > \text{2-bromo-2-methylpropane}

Part (ii): benzylic bromides

(A) C6H5CH2BrC_6H_5CH_2Br (1∘1^\circ benzylic), (B) C6H5CH(C6H5)BrC_6H_5CH(C_6H_5)Br (2∘2^\circ, two Ph), (C) C6H5CH(CH3)BrC_6H_5CH(CH_3)Br (2∘2^\circ, one Ph), (D) C6H5C(CH3)(C6H5)BrC_6H_5C(CH_3)(C_6H_5)Br (3∘3^\circ, two Ph). …

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