Organic Chemistry
Organic Chemistry
11th Edition
ISBN: 9781118133576
Author: T. W. Graham Solomons, Craig Fryhle
Publisher: Wiley, John & Sons, Incorporated
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Chapter 12, Problem 34P
Interpretation Introduction

Interpretation:

Each of the given compounds starting from primary or secondary alcohols is to be synthesized.

Concept introduction:

Electrophiles are electron deficient species that have positive or partially positive charge. Lewis acids are electrophiles that accept electron pair.

Nucleophiles are electron rich species that have negative or partially negative charge. Lewis bases are nucleophiles that donate electron pair.

Free radical is an atom, molecule, or ion that has unpaired electrons, which makes it highly chemically reactive.

Substitution reaction: A reaction in which one of the hydrogen atoms of a hydrocarbon or a functional group is substituted by any other functional group is called substitution reaction.

Elimination reaction: A reaction in which two substituent groups are detached and a double bond is formed is called elimination reaction.

Addition reaction: It is the reaction in which unsaturated bonds are converted to saturated molecules by the addition of molecules.

The Grignard reagent or RMgX is a polar organometallic reagent that undergoes nucleophilic addition reaction with aldehydes and ketones. It contains organic group that is covalently bonded to magnesium atom, which is also bonded to halogen atom.

Grignard reagent or RMgX can be synthesized from haloalkanes by reacting them with magnesium in the presence of dry ether.

The Grignard reagent or RMgX is a reagent that can be prepared from an alkyl halide and magnesium in the ether. It adds on the alkyl group to the carbonyl moiety and converts aldehydes or ketones into alcohols. The reaction of cyanides with RMgX forms ketones. It reacts with carbon dioxide to form carboxylic acid.

Hydroxyl group of an alcohol can undergo substitution to form halogen derivatives with reagents like MsCl or PBr3.

Primary and secondary alcohols can be oxidized to aldehydes or ketones by oxidizing them with PCC and chromic acid respectively.

The OH group is replaced by Br on reaction with PBr3.

Alkene is converted into alcohol on reaction with THF and water.

Alkene is converted into alkane in presence of H2/Pt, Pd or Ni.

Alcohol can be converted into aldehyde in the presence of DMSO, Et3N, or PCC. CH2Cl2

Secondary alcohol can be converted into ketone on reaction with H2CrO4, acetone and water.

Primary alcohol can be converted into carboxylic acid on reaction with (i) KMnO4,HO and heat, (ii) H3O+

Primary alcohol can be converted into ether on reaction with sulfuric acid at 140°C .

Grignard reagent reacts with a ketone in the presence of NH4Cl/H2O to form an alcohol.

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Develop syntheses for the following compounds. As starting materials, you may use cyclopentanol, alcohols containing no more than four carbon atoms, and any common reagents and solvents. (a) trans-cyclopentane-1,2-diol (b) 1-chloro-1-ethylcyclopentane
11:43 Q1. (a) (c) (d) (b) Two stereoisomers of but-2-ene are formed when 2-bromobutane reacts with ethanolic potassium hydroxide. (i) Explain what is meant by the term stereoisomers. Library Name and outline a mechanism for the reaction of 2-bromo-2-methylpropane with ethanolic potassium hydroxide to form the alkene 2-methylpropene, (CH3)2C=CH₂ Name of mechanism Mechanism (ii) Draw the structures and give the names of the two stereoisomers of but-2-ene. Stereoisomer 1 Name (iii) Name this type of stereoisomerism. Select Name Stereoisomer 2 When 2-bromo-2-methylpropane reacts with aqueous potassium hydroxide, 2-methylpropan-2-ol is formed as shown by the following equation. CH3 H₂C-C-CH3 + KOH Br Page 2 of 14 CH3 H3C-C-CH3 + KBr ОН State the role of the hydroxide ions in this reaction. Write an equation for the reaction that occurs when CH3CH₂CH₂CH₂Br reacts with an excess of ammonia. Name the organic product of this reaction. Equation Name of product 9,284 Photos, 1,166 Videos For You…
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Chapter 12 Solutions

Organic Chemistry

Ch. 12 - What products would you expect from the reaction...Ch. 12 - What products would you expect from the reaction...Ch. 12 - What product (or products) would be formed from...Ch. 12 - Prob. 14PCh. 12 - 12.13 Write reaction conditions and the product...Ch. 12 - Prob. 16PCh. 12 - Predict the organic product from each of the...Ch. 12 - Predict the organic product from each of the...Ch. 12 - Predict the organic product from each of the...Ch. 12 - Predict the major organic product from each of the...Ch. 12 - 12.21 Predict the major organic product from each...Ch. 12 - 12.22 Predict the product of the following...Ch. 12 - Synthesize each of the following compounds from...Ch. 12 - Prob. 24PCh. 12 - 21. Write a mechanism for the following reaction....Ch. 12 - Prob. 26PCh. 12 - Prob. 27PCh. 12 - 23. What organic products A-H would you expect...Ch. 12 - Prob. 29PCh. 12 - Show how 1-pentanol could be transformed into each...Ch. 12 - Provide the reagents needed to accomplish...Ch. 12 - Prob. 32PCh. 12 - For each of the following alcohols, write a...Ch. 12 - Prob. 34PCh. 12 - Prob. 35PCh. 12 - Prob. 36PCh. 12 - Prob. 37PCh. 12 - 34. Synthesize the following compound using...Ch. 12 - 37. Explain how and IR spectroscopy could be used...Ch. 12 - 12.40 When sucrose (common table sugar) is treated...Ch. 12 - 38. An unknown X shows a broad absorption band in...Ch. 12 - Prob. 1LGPCh. 12 - Which of the following could be employed to...Ch. 12 - Prob. 2QCh. 12 - 12.3 Supply the missing reagents. Ch. 12 - 12.4 Supply the missing reagents and...Ch. 12 - Supply the missing starting compound.
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