Arrange the compounds of each set in order of reactivity towards SN2 displacement:(i)2-Bromo-2-methylbutane,1-Bromopentane,2-Bromopentane (ii)1-Bromo-3-methylbutane,2-Bromo-2-methylbutane,2-Bromo-3-methylbutane (iii)1-Bromobutane,1-Bromo-2,2-dimethylpropane,1-Bromo-2-methylbutane,1-Bromo-3-methylbutane.
(i)
An SN2 reaction involves the approaching of the nucleophile to the carbon atom to which the leaving group is attached. When the nucleophile is sterically hindered, then the reactivity towards SN2 displacement decreases. Due to the presence of substituents, a hindrance to the approaching nucleophile increases in the following order.
1-Bromopentane<2-bromopentane<2-Bromo-2-methylbutane Hence,the increasing order of reactivity towards SN2 displacement is:2-Bromo-2-methylbutane<2-Bromopentane<1-Bromopentane
(ii)
Since steric hindrance in alkyl halides increases in the order of 1°<2°<3°, the increasing order of reactivity towards SN2 displacement is 3°<2°<1°. Hence, the given set of compounds can be arranged in the increasing order of their reactivity towards SN2 displacement as:2-Bromo-2-methylbutane<2-Bromo-3-methylbutane<1-Bromo-3-methylbutane [2Bromo-3-methylbutane is incorrectly given in NCERT]
(iii)The steric hindrance to the nucleophile in the SN2 mechanism increases with a decrease in the distance of the substituents from the atom containing the leaving group. Further, the steric hindrance increases with an increase in the number of substituents. Therefore, the increasing order of steric hindrances in the given compounds is as below:1-Bromobutane<1-Bromo-3-methylbutane<1-Bromo-2-methylbutane<1-Bromo-2, 2-dimethylpropane Hence, the increasing order of reactivity of the given compounds towards SN2 displacement is:1-Bromo-2,2-dimethylpropane<1-Bromo-2-methylbutane<1-Bromo-3-methylbutane<1-Bromobutane.
Write IUPAC names of the following compounds and classify them into primary, secondary and tertiary amines.
(i) (CH3 )2CHNH2 (ii) CH3 (CH2 )2NH2 (iii) CH3NHCH(CH3 )2
(iv) (CH3 )3CNH2 (v) C6H5NHCH3 (vi) (CH3CH2 )2NCH3 (vii) m–BrC6H4NH2
Give one chemical test to distinguish between the following pairs of compounds.
(i) Methylamine and dimethylamine
(ii) Secondary and tertiary amines
(iii) Ethylamine and aniline
(iv) Aniline and benzylamine
(v) Aniline and N-methylaniline
Account for the following:
(i) pKb of aniline is more than that of methylamine.
(ii) Ethylamine is soluble in water whereas aniline is not.
(iii) Methylamine in water reacts with ferric chloride to precipitate hydrated ferric oxide.
(iv) Although amino group is o– and p– directing in aromatic electrophilic substitution reactions, aniline on nitration gives a substantial amount of m-nitroaniline.
(v) Aniline does not undergo Friedel-Crafts reaction.
(vi) Diazonium salts of aromatic amines are more stable than those of aliphatic amines. (vii) Gabriel phthalimide synthesis is preferred for synthesising primary amines.
Give the IUPAC names of the following compounds:
(i)CH3CH(Cl)CH(Br)CH3
(ii)CHF2CBrClF
(iii)ClCH2C≡CCH2Br
(iv)(CCl3)3CCl
(v)CH3C(p-ClC6H4)2CH(Br)CH3
(vi)(CH3)3CCH=CClC6H4I-p
Write the structures of the following organic halogen compounds.
(i) 2-Chloro-3-methylpentane
(ii)p-Bromochlorobenzene
(iii)1-Chloro-4-ethylcyclohexane
(iv)2-(2-Chlorophenyl)-1-iodooctane
(v)2-Bromobutane
(vi)4-tert-Butyl-3-iodoheptane
(vii)1-Bromo-4-sec-butyl-2-methylbenzene
(viii)1,4-Dibromobut-2-ene
Which one of the following has the highest dipole moment?
(i)CH2Cl2
(ii)CHCl3
(iii)CCl4
A hydrocarbon C5H10 does not react with chlorine in the dark but gives a single monochloro compound C5H9Cl in bright sunlight. Identify the hydrocarbon.