Udemy
    •  
    •  
    •  
    •  
    •  
    •  
    •  
    •  
Turn what you know into an opportunity and reach millions around the world.
Learn More
Your cart is empty.
Keep shopping
Organic Chemistry - Alcohols Phenols & Ethers
Rating: 5.0 out of 5(1 rating)
8 students

Organic Chemistry - Alcohols Phenols & Ethers

Complete Chemistry for Engg and Medical Entrance Exam Preparation. ( IIT JEE Main | Advanced | BITSAT | SAT | NEET etc.)
Created bystudi live
Last updated 3/2022
English
English [Auto],

What you'll learn

  • Name alcohols, phenols and ethers according to the IUPAC system of nomenclature
  • Discuss the reactions involved in the preparation of alcohols from (i) alkenes (ii) aldehydes, ketones and carboxylic acids
  • Discuss the reactions involved in the preparation of phenols from (i) haloarenes (ii) benzene sulphonic acids (iii) diazonium salts and (iv) cumene
  • Discuss the reactions for preparation of ethers from (i) alcohols and (ii) alkyl halides and sodium alkoxides/aryloxides
  • Correlate physical properties of alcohols, phenols and ethers with their structures
  • Discuss chemical reactions of the three classes of compounds on the basis of their functional groups

Course content

1 section • 91 lectures • 10h 40m total length
  • Alcohols Introduction9:56
  • Classification of Alcohols on the Basis of Hydroxyl Group10:23
  • Classification Of Alcohols On The Basis of Carbon Atom13:35
  • To Identify the Number of Type of Alcohol5:57
  • Classification of Alcohol(on the Basis of Type Hybridisation of Carbon Attached)11:56
  • Nomenclature of Alcohol9:32
  • Isomerism in Alcohol8:51
  • Formula to calculate the Total No. of Isomeric Alcohols & Ethers6:10
  • Methods of Preparation4:02
  • Methods of Preparation- From Alkylhalide part 19:27
  • Methods of Preparation- From Alkylhalide part 27:14
  • Methods of Preparation- From Alkene (by Hydration)8:06
  • Mechanism for Hydration of Alkene8:37
  • Hydroboration Oxidation9:24
  • Example of Hydroboration Oxidation11:13
  • From Carbonyl Compound By Action of Grignard Reagent part 18:08
  • From Carbonyl Compound By Action of Grignard Reagent part 28:08
  • From Carbonyl Compound (By Reduction ) part 16:07
  • From Carbonyl Compound (By Reduction ) part 25:27
  • From Carbonyl Compound (By Reduction ) part 36:42
  • Structure of Functional Group (Alcohol)4:55
  • Chemical Reactions of Alcohol part - 18:48
  • Chemical Reactions of Alcohol part - 210:27
  • Chemical Reactions of Alcohol part - 38:32
  • Alcohols in Everyday Life2:13
  • Chemical Reactions (Reaction with HI)10:01
  • Chemical Reactions (Reaction with Phosphorus Halide)9:10
  • Chemical Reactions (Reaction with Thionyl Chloride)5:44
  • Chemical Reactions (Dehydration of Alcohol) Part - 27:30
  • Chemical Reactions (Dehydration of Alcohol) Part - 19:28
  • Chemical Reactions (Mechanism of Dehydration of Alcohol)6:06
  • Chemical Reactions (Dehydration along with Alumina)6:31
  • Chemical Reactions (Dehydrogenation of Alcohol)6:46
  • Chemical Reactions (Esterification)5:29
  • Oxidation of Alcohol part - 111:19
  • Oxidation of Alcohol part - 28:44
  • Oxidation of Alcohol part - 37:07
  • Oxidation of Alcohol part - 46:35
  • Reaction of Alcohol with Metals7:39
  • Structure of Alcohols6:14
  • Physical Properties of Alcohols6:04
  • Different Types of Industrial Alcohols4:02
  • Uses of Alcohols6:36
  • Phenol Introduction8:31
  • Classification of Phenols Part - 16:49
  • Classification of Phenols Part - 22:58
  • Structure of Functional Group (Phenols)3:58
  • Preparation of Phenols from Chlorobenzene5:41
  • Preparation of Phenols from Benzene Sulphonic Acid5:02
  • Preparation of Phenols from Cumene4:59
  • Preparation of Phenols from Aniline4:50
  • Reactions of Phenols7:29
  • Reactions of Phenols Kolbe's Reactions5:28
  • Reactions of Phenols Reimer -Tiemann Reactions4:55
  • Chemical Reactions6:47
  • Chemical Reactions Bromination part - 16:01
  • Chemical Reactions Bromination part - 24:15
  • Chemical Reactions Nitration of Phenol part - 19:03
  • Chemical Reactions Nitration of Phenol part - 24:39
  • Chemical Reactions Sulphonation5:10
  • Distinguishing Test4:17
  • Uses of Phenols5:04
  • Ethers Introduction9:56
  • Ether Definition part - 17:27
  • Ether Definition part - 25:06
  • Classification of Ethers6:16
  • Nomenclature of Ethers9:54
  • Example of Nomenclature10:10
  • Metamerism6:03
  • Methods of Preparation ( Williamsons Synthesis)9:46
  • Ethers Example - Part 16:52
  • Ethers Example - Part 26:08
  • Form Diazomethane8:01
  • From Alkylhalide (Action of Dry Silver Oxide)7:08
  • Continuous Etherfication9:59
  • Mechanism of Dehydration8:23
  • Limitations of Continuous Etherfication6:24
  • Mnemonics for Preparation of Ether2:51
  • Chemical Reaction of Ethers4:40
  • Action of Hot HI on Simple & Mixed Ethers9:01
  • Action of Cold HI on simple & Mixed Ethers10:27
  • Mechanism of Cold HI on Ethers7:43
  • Action of PCl5 on Simple & Mixed Ethers4:59
  • Action of Acetylchloride & Acetic Anhydride-14:50
  • Action of Carbon Monoxide5:53
  • Formation of Oxonium Salt5:30
  • Application of Ethers in Daily Life3:14
  • Electrophilic Substitution7:18
  • Electrophilic Substitution Reaction7:11
  • Mnemonics for User Ethers4:42
  • Uses of Ether in Daily Life4:15

Requirements

  • Basic understanding of chemistry and math's

Description

SUMMARY

Alcohols and phenols are classified (i) on the basis of the number of hydroxyl groups and (ii) according to the hybridisation of the carbon atom, sp3 or sp2 to which the –OH group is attached. Ethers are classified on the basis of groups attached to the oxygen atom

Alcohols may be prepared (1) by hydration of alkenes (i) in presence of an acid and (ii) by hydroboration-oxidation reaction (2) from carbonyl compounds by (i) catalytic reduction and (ii) the action of Grignard reagents. Phenols may be prepared by (1) substitution of (i) halogen atom in haloarenes and (ii) sulphonic acid group in aryl sulphonic acids, by –OH group (2) by hydrolysis of diazonium salts and (3) industrially from cumene.

Alcohols are higher boiling than other classes of compounds, namely hydrocarbons, ethers and haloalkanes of comparable molecular masses. The ability of alcohols, phenols and ethers to form intermolecular hydrogen bonding with water makes them soluble in it.

Alcohols and phenols are acidic in nature. Electron withdrawing groups in phenol increase its acidic strength and electron releasing groups decrease it.

Alcohols undergo nucleophilic substitution with hydrogen halides to yield alkyl halides. Dehydration of alcohols gives alkenes. On oxidation, primary alcohols yield aldehydes with mild oxidising agents and carboxylic acids with strong oxidising agents while secondary alcohols yield ketones. Tertiary alcohols are resistant to oxidation.

The presence of –OH group in phenols activates the aromatic ring towards electrophilic substitution and directs the incoming group to ortho and para positions due to resonance effect. Reimer-Tiemann reaction of phenol yields salicylaldehyde. In presence of sodium hydroxide, phenol generates phenoxide ion which is even more reactive than phenol. Thus, in alkaline medium, phenol undergoes Kolbe’s reaction.

Ethers may be prepared by (i) dehydration of alcohols and (ii) Williamson synthesis. The boiling points of ethers resemble those of alkanes while their solubility is comparable to those of alcohols having same molecular mass. The C–O bond in ethers can be cleaved by hydrogen halides. In electrophilic substitution, the alkoxy group activates the aromatic ring and directs the incoming group to ortho and para positions.

Who this course is for:

  • Parents whose wards are students preparing for Indian Engineering and Medical Entrance Exams
  • IIT JEE | JEE Main | JEE Advanced | BITSAT | NEET | AIPMT | KVPY | SAT | GATE | MSAT