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Edexcel AS Chemistry

Revision Notes

Home / AS / Chemistry / Edexcel / Revision Notes / 3. Organic Chemistry / 3.4 Halogenoalkanes / 3.4.2 Nucleophilic Substitution


3.4.2 Nucleophilic Substitution


Nucleophilic Substitution: Reactions

  • A nucleophile is an electron-rich species that can donate a pair of electrons
    • ‘Nucleophile’ means ‘nucleus / positive charge loving’ as nucleophiles are attracted to positively charged species
    • Nucleophilic refers to reactions that involve a nucleophile

Formation of alcohols

  • The nucleophile in this reaction is the hydroxide ion, OH- 
  • An aqueous solution of sodium hydroxide (NaOH) or potassium hydroxide (KOH) with ethanol is used to form an alcohol
  • This reaction is very slow at room temperature, so the reaction mixture is warmed
  • This is an example of a hydrolysis reaction and the product is an alcohol
    • The rate of this reaction depends on the type of halogen in the halogenoalkane
    • The stronger the C-X bond, the slower the rate of the reaction
    • In terms of bond enthalpy, C-F > C-Cl > C-Br > C-I
    • Fluoroalkanes do not react at all, but iodoalkanes have a very fast rate of reaction

Halogen Compounds Electrophilic Substitution by NaOH, downloadable AS & A Level Chemistry revision notes

The halogen is replaced by the nucleophile, OH- 

  • This reaction could also be done with water as the nucleophile, but it is very slow
    • The hydroxide ion is a better nucleophile than water as it carries a full negative charge
    • In water, the oxygen atom only carries a partial charge

Halogen Compounds Nucleophilicity, downloadable AS & A Level Chemistry revision notes

A hydroxide ion is a better nucleophile as it has a full formal negative charge whereas the oxygen atom in water only carries a partial negative charge; this causes the nucleophilic substitution reaction with water to be much slower than the aqueous alkali

Reaction with water 

  • The water molecule is a weak nucleophile, but it will eventually substitute for the halogen 
  • This occurs much more slowly compared to when warm aqueous sodium hydroxide is used
  • An alcohol is produced
    • RX + H2O → ROH + H+ + X-
    • CH3CH2Br + H2O → CH3CH2OH + H+ + Br-
  • If silver nitrate solution in ethanol is added to the solution, the silver ions will react with the halide ions as soon as they form, giving a silver halide precipitate
    • Ag+ (aq) + X- (aq) → AgX (s) 

Formation of nitriles

  • The nucleophile in this reaction is the cyanide ion, CN- 
  • An ethanolic solution of potassium cyanide (KCN in ethanol) is heated under reflux with the halogenoalkane
  • The product is a nitrile
    • E.g. bromoethane is heated under reflux with ethanolic potassium cyanide to form propanenitrile

Halogen Compounds Electrophilic Substitution by KCN, downloadable AS & A Level Chemistry revision notes

The halogen is replaced by a cyanide group, CN -

  • The nucleophilic substitution of halogenoalkanes with KCN adds an extends the carbon chain by adding an extra carbon atom 
  • This reaction can therefore be used by chemists to make a compound with one more carbon atom than the best available organic starting material

Formation of primary amines by reaction with ammonia

  • The nucleophile in this reaction is the ammonia molecule, NH3 
  • An ethanolic solution of excess ammonia (NH3 in ethanol) is heated under pressure with a primary halogenoalkane
    • An excess of ammonia is used because the product is more reactive than ammonia so further substitution reactions could occur
  • The product is a primary amine
    • E.g. bromoethane reacts with excess ethanolic ammonia when heated under pressure to form ethylamine

Halogen Compounds Electrophilic Substitution by NH3, downloadable AS & A Level Chemistry revision notes

The halogen is replaced by an amine group, NH2

Formation of alkenes 

  • The halogenoalkanes are heated with ethanolic sodium hydroxide causing the C-X bond to break heterolytically, forming an X- ion and leaving an alkene as an organic product
    • E.g. bromoethane is heated with ethanolic sodium hydroxide to form ethene

Hydrocarbons Elimination Reaction, downloadable AS & A Level Chemistry revision notes

Production of an alkene from a halogenoalkane by reacting it with ethanolic sodium hydroxide and heating it

 Halogen Compounds Elimination, downloadable AS & A Level Chemistry revision notes

Hydrogen bromide is eliminated to form ethene



  • 1. Physical Chemistry
    • 1.1 Atomic Structure
      • 1.1.1 Structure of the Atom
        • 1.1.2 Isotopes
          • 1.1.3 Relative Mass
            • 1.1.4 Mass Spectrometry
            • 1.2 Ions & Electrons
              • 1.2.1 Ionisation Energy
                • 1.2.2 Quantum Shells
                  • 1.2.4 Electronic Configurations
                  • 1.3 The Periodic Table
                    • 1.3.1 Periodicity
                    • 1.4 Bonding
                      • 1.4.1 Ionic Bonding Overview
                        • 1.4.2 Representing Ionic Bonding
                          • 1.4.3 Ionic Trends
                            • 1.4.4 Physical Properties of Ionic Compounds
                              • 1.4.5 Covalent Bonding Overview
                                • 1.4.6 Covalent Dot-and-Cross Diagrams
                                  • 1.4.7 Bond Length & Bond Strength
                                    • 1.4.8 Shapes of Covalent Compounds
                                    • 1.5 Structure
                                      • 1.5.1 Electronegativity
                                        • 1.5.2 Intermolecular Forces
                                          • 1.5.3 Hydrogen Bonding
                                            • 1.5.4 Intermolecular Forces & Physical Properties
                                              • 1.5.5 Metallic Bonding
                                                • 1.5.6 Giant Lattices
                                                  • 1.5.7 Covalent Structures
                                                    • 1.5.8 Predicting Structures
                                                    • 1.6 Formulae, Equations & Avogadro
                                                      • 1.6.1 Empirical & Molecular Formulae
                                                        • 1.6.4 The Mole & the Avogadro Constant
                                                        • 1.7 Reaction Calculations
                                                          • 1.7.1 Reacting Volume Calculations
                                                            • 1.7.2 Titrations
                                                              • 1.7.3 Error & Uncertainty
                                                                • 1.7.4 Yield & Atom Economy
                                                                • 1.8 Energetics I
                                                                  • 1.8.1 Enthalpy Changes
                                                                    • 1.8.3 Calorimetry
                                                                      • 1.8.4 Hess Cycles
                                                                        • 1.8.5 Bond Enthalpy
                                                                          • Enthalpy Level Diagrams
                                                                          • 1.9 Kinetics
                                                                            • 1.9.1 Collision Theory & Rates
                                                                              • 1.9.2 Calculating Rates of Reaction
                                                                                • 1.9.3 Maxwell-Boltzmann Distributions
                                                                                  • 1.9.4 Catalysts in Industry
                                                                                  • 1.10 Equilibrium I
                                                                                    • 1.10.2 Le Chatelier's Principle
                                                                                      • 1.10.3 The Rate & Yield Compromise
                                                                                        • 1.10.4 Deducing Kc Expressions
                                                                                      • 2. Inorganic Chemistry
                                                                                        • 2.1 Redox I
                                                                                          • 2.1.1 Oxidation Number
                                                                                            • 2.1.2 Types of Reduction & Oxidation
                                                                                              • 2.1.3 Redox & Disproportionation
                                                                                                • 2.1.4 Ionic Equations
                                                                                                • 2.2 Groups 1 & 2
                                                                                                  • 2.2.1 Explaining Group 2 Trends
                                                                                                    • 2.2.2 Reactions of Group 2
                                                                                                      • 2.2.3 Group 2 Hydroxides & Sulfates
                                                                                                        • 2.2.4 Group 2 Carbonates & Nitrates
                                                                                                          • 2.2.5 Flame Tests
                                                                                                          • 2.3 Group 7
                                                                                                            • 2.3.1 Group 7 Trends
                                                                                                              • 2.3.2 Halogen Displacement Reactions
                                                                                                                • 2.3.3 Halogen Redox Reactions
                                                                                                                  • 2.3.4 Halide Ion Reactions
                                                                                                                • 3. Organic Chemistry
                                                                                                                  • 3.1 Introduction to Organic Chemistry
                                                                                                                    • 3.1.1 formulae of organic compounds
                                                                                                                      • 3.1.2 Homologous Series and Functional Groups
                                                                                                                        • 3.1.3 Nomenclature and Classification
                                                                                                                          • 3.1.4 Structural Isomerism
                                                                                                                            • 3.1.5 Stereoisomerism
                                                                                                                            • 3.2 Alkanes
                                                                                                                              • 3.2.1 Describing Alkanes
                                                                                                                                • 3.2.2 Alkane Fuels
                                                                                                                                  • 3.2.3 Pollution from Combustion
                                                                                                                                    • 3.2.4 Reducing Pollution
                                                                                                                                      • 3.2.5 Free Radicals
                                                                                                                                      • 3.3 Alkenes
                                                                                                                                        • 3.3.1 Describing Alkenes
                                                                                                                                          • 3.3.2 Bonding in Alkenes
                                                                                                                                            • 3.3.3 Electrophilic addition
                                                                                                                                              • 3.3.4 Electrophilic Addition Mechanism
                                                                                                                                                • 3.3.5 Saturation Test
                                                                                                                                                  • 3.3.6 Addition Polymerisation
                                                                                                                                                    • 3.3.7 Waste Polymers
                                                                                                                                                    • 3.4 Halogenoalkanes
                                                                                                                                                      • 3.4.1 Classifying Halogenoalkanes
                                                                                                                                                        • 3.4.2 Nucleophilic Substitution
                                                                                                                                                          • 3.4.3 Nucleophilic Substitution Mechanism
                                                                                                                                                            • 3.4.4 Hydrolysis of Halogenoalkanes
                                                                                                                                                              • 3.4.5 Reactivity of Halogenoalkanes
                                                                                                                                                              • 3.5 Alcohols
                                                                                                                                                                • 3.5.1 Classifying Alcohols
                                                                                                                                                                  • 3.5.2 Reactions of Alcohols
                                                                                                                                                                    • 3.5.3 Organic Liquid Preparation & Purification
                                                                                                                                                                    • 3.6 Modern Analytical Techniques I
                                                                                                                                                                      • 3.6.1 Mass Spectrometry
                                                                                                                                                                        • 3.6.2 Infrared (IR) Spectroscopy
                                                                                                                                                                      • 4. Core Chemistry Practicals
                                                                                                                                                                        • 4.1 Physical Chemistry Core Practicals
                                                                                                                                                                          • 4.1.1 Molar Volume of a Gas
                                                                                                                                                                            • 4.1.2 Standard Solutions
                                                                                                                                                                              • 4.1.3 Determining Concentrations
                                                                                                                                                                                • 4.1.4 Determining Enthalpy Change of Reaction
                                                                                                                                                                                • 4.2 Inorganic & Organic Chemistry Core Practicals
                                                                                                                                                                                  • 4.2.1 Hydrolysis of Halogenoalkanes
                                                                                                                                                                                    • 4.2.2 Ethanol Oxidation
                                                                                                                                                                                      • 4.2.3 Chlorination of 2-Methylpropan-2-ol
                                                                                                                                                                                        • 4.2.4 Qualitative Analysis


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                                                                                                                                                                                      Author: Philippa



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