{"id":23143,"date":"2022-01-31T21:15:27","date_gmt":"2022-01-31T15:45:27","guid":{"rendered":"https:\/\/infinitylearn.com\/surge\/?p=23143"},"modified":"2022-02-07T19:40:16","modified_gmt":"2022-02-07T14:10:16","slug":"aldehydes-ketones-and-carboxylic-acids-class-12-notes-chemistry-chapter-12","status":"publish","type":"post","link":"https:\/\/infinitylearn.com\/surge\/study-material\/cbse-notes\/class-12\/chemistry\/aldehydes-ketones-and-carboxylic-acids-class-12-notes-chemistry-chapter-12\/","title":{"rendered":"Aldehydes, Ketones and Carboxylic Acids Class 12 Notes Chemistry Chapter 12"},"content":{"rendered":"<h2>Aldehydes, Ketones and Carboxylic Acids Class 12 Notes Chemistry Chapter 12<\/h2>\n<p><strong>1. The classes of organic compounds<\/strong> containing carbonyl group (CO) as the functional group are aldehydes, ketones, carboxylic acids and their derivates. These are collectively called carbonyl compounds.<br \/>\n<strong>2. Nature of carbonyl group:<\/strong> Oxygen atom in carbonyl group is far more electronegative than carbon atom. As a result, the oxygen atom tends to attract the electron cloud of the \u03c0-bond towards itself, i. e., the \u03c0-electron cloud of &gt;c = O is unsymmetrical.<br \/>\nHence carbonyl carbon acquires positive charge and carbonyl oxygen carries negative charge. Thus, the carbonyl group is polar in nature.<br \/>\n<strong>3. Methods of preparation of Aldehydes and Ketones:<\/strong><br \/>\n(a) By controlled oxidation of primary and secondary alcohol, aldehydes and ketones are produced.<br \/>\n(b) By dehydrogenation of alcohols : Primary alcohols on dehydrogenation produce aldehydes while secondary alcohols produce ketones.<br \/>\n<strong>4. Preparation of Aldehydes:<\/strong><br \/>\n(a) Acyl chloride (acid chloride) is hydrogenated using, palladium on barium sulphate which is partially poisoned by the addition of S or quinoline. This reaction is called Rosenmund reduction. This method is used to prepare aldehydes.<br \/>\n(b) N itriles are reduced to corresponding imine with stannous chloride in the presence of hydrochloric acid, which on hydrolysis give corresponding aldehyde. This reaction is called Stephen\u2019s reduction.<br \/>\nChromyl chloride (CrO<sub>2<\/sub>ClO<sub>2<\/sub>) oxidises methyl group of toluene to a chromium complex, which on hydrolysis gives corresponding benzaldehyde. This reaction is called <strong>Etard reaction.<\/strong><br \/>\n(d) When benzene or its derivatives is treated with CO and HCl in the presence of anhydrous AlCl<sub>3<\/sub> or CuCl, it gives benzaldehyde or substituted benzaldehyde. This reaction is called Gatterman-Koch reaction.<br \/>\n<strong>5. Preparation of Ketones:<\/strong><br \/>\n(a) Treatment of acyl chlorides with dialkyl cadmium, prepared by the reaction of cadmium chloride with Grignard reagent, gives ketones.<br \/>\n(b)<strong>From nitriles:<\/strong><br \/>\n<img loading=\"lazy\" src=\"https:\/\/infinitylearn.com\/surge\/wp-content\/uploads\/2021\/12\/32755329431_0bf5bf1dfc_o.png\" alt=\"aldehydes-ketones-carboxylic-acids-cbse-notes-class-12-chemistry-1\" width=\"330\" height=\"153\" \/><br \/>\nWhen benzene or substituted benzene is treated with acid chloride in the presence of anhydrous A1C13, the corresponding ketone is formed. This reaction is known as <strong>Friedel-craft\u2019s acylation reaction<\/strong>.<br \/>\nProperties of aldehyde and ketones<br \/>\n(a) Aldehydes are much more reactive than ketones in nucleophilic addition reactions.<br \/>\n(b)<strong> Nucleophilic addition reactions:<\/strong> Aldehydes and ketones undergo nucleophilic addition reactions onto the carbonyl group with a number of nucleophiles such as HCN, NaHSO<sub>3<\/sub>, alcohols, ammonia derivatives and Grignard reagents.<br \/>\n(c)<strong> Reduction to alcohols:<\/strong> Aldehydes and ketones on reduction gives primary and secondary alcohols respectively.<br \/>\n(d) The carbonyl group of aldehydes and ketones is reduced to CH<sub>2<\/sub> group on treatment with zinc amalgam and concentrated hydrochloric acid<strong> (Chemmenson reduction)<\/strong> or with hydrazine followed by heating with NaOH or KOH in high boiling solvent such as ethylene glycol <strong>(Wolff-Kishner reduction)<\/strong>.<br \/>\n(e) Tollen\u2019s reagent (ammonical silver nitrate) oxidises aldehyde and the silver ions are reduced to silver which appear as a bright silver mirror on the side of the test tube ketones do not give this test.<br \/>\n(f) Aldehydes reduce Fehling\u2019s solution to form a red precipitate of cuprous oxide. Fehling\u2019s solution is obtained by mixing a solution of copper sulphate and a solution of sodium hydroxide and sodium potassium tartrate. Ketones do not reduce Fehling\u2019s solution..Hence no precipitate is formed.<br \/>\n(g) Aldehydes and ketones having atleast one \u03b1-hydrogen atom undergoes a condensation reaction when warmed with dilute alkali to form \u03b2 -hydroxy aldehydes or \u03b2-hydroxy ketones respectively. The reaction is known as <strong>aldol condensation.<\/strong><br \/>\n(h) The condensation of a mixture of two different aldehydes or\/and ketones each having an a-hydrogen atom, in presence of dilute alkali gives a mixture of four products. The reaction is known as <strong>cross aldol condensation.<\/strong><br \/>\n<strong>6. Cannizzaro reaction:<\/strong> Aldehydes which do not have an a-hydrogen atom, undergo self-oxidation and reduction (disproportionation) reaction on treatment with concentrated alkali. In this reaction, one molecule of the aldehyde is reduced to alcohol white another is oxidised to carboxylic acid salt.<br \/>\n<strong>7. Electrophilic substitution reaction:<\/strong> It takes place at the ring in which the carbonyl group acts as a deactivating and meta-directing group.<br \/>\n<strong>8. Methods of preparation of carboxylic acids:<\/strong><br \/>\n(a) From oxidation of primary alcohols and aldehydes.<br \/>\n(b) Aromatic carboxylic acids can be obtained by side chain oxidation of alkyl benzenes.<br \/>\n(c) From hydrolysis of nitriles and amides:<br \/>\n(d) From reaction of Grignard reagents with carbon dioxide:<br \/>\n<strong>9.<\/strong> Aliphatic carboxylic acids having up to four carbon atoms are miscible in water due to the formation of hydrogen bonds with water.<br \/>\n<strong>10.<\/strong> The solubility decreases as the number of carbon atoms increases.<br \/>\n(i) The electron withdrawing group (Cl, NO<sub>2<\/sub>, CN, etc.) stabilises the carboxylate anion by dispersing the negative charge of the carboxylate anion, RCOO<sup>\u2013<\/sup>, and thus increases the acidic strength.<br \/>\n(ii) The presence of electron donating substituent such as alkyl group intensifies the negative charge on the RCOO<sup>\u2013<\/sup> anion and destabilises it thereby making the carboxylic acid less acidic.<br \/>\n(iii) Carboxylic acids having an \u03b1-hydrogen are halogenated at the \u03b1-position on treatment with chlorine or bromine is the presence of small amount of red phosphorus to give \u03b1- chloro or  \u03b1 \u2013 bromo carboxylic acids. This reaction is known as <strong>Hell-Volhard Zelinsky Reaction.<\/strong><\/p>\n<h4><\/h4>\n","protected":false},"excerpt":{"rendered":"<p>Aldehydes, Ketones and Carboxylic Acids Class 12 Notes Chemistry Chapter 12 1. 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