Reactions of Alkenes
- Alkenes are very useful compounds as they can undergo many types of reactions
- They can therefore be used as starting molecules when making new compounds
Electrophilic addition
- Electrophilic addition is the addition of an electrophile to a double bond
- The C-C double bond is broken, and a new single bond is formed from each of the two carbon atoms
- Electrophilic addition reactions include the addition of:
- Hydrogen (also known as hydrogenation reaction)
- Steam (H2O (g))
- Hydrogen halide (HX)
- Halogen
The diagram shows an overview of the different electrophilic addition reactions alkenes can undergo
Oxidation
- Alkenes can also be oxidised by acidified potassium manganate(VII) (KMnO4) which is a very powerful oxidising agent
- Alkenes can be oxidised by both hot and cold KMnO4 which will result in different products being formed
- When shaken with cold dilute KMnO4 the pale purple solution turns colourless and the product is a diol
- When alkenes are reacted with hot concentrated KMnO4 the conditions are harsher causing the C-C double bond to completely break
- The O-H groups in the diol formed are further oxidised to ketones, aldehydes, carboxylic acids or carbon dioxide gas
- The actual products formed depend on what is bonded to the carbon atoms in the alkene
Alkenes can be oxidised by cold dilute and hot concentrated KMnO4 to give different products
- The reactions of alkenes with hot concentrated KMnO4 can be used to determine the position of the double bond in larger alkenes
The above reactions can be used to predict where the double bond in a larger molecule is
Worked example: Oxidation of alkenes
Answer
The products are propanone (a ketone), carbon dioxide and water.
Worked example: Identifying alkenes from oxidation reactions
Answer
The alkene is 1-butene.
Addition polymerisation
- Addition polymerisation is the reaction of many monomers containing at least one double C-C bond to form the long-chain polymers as the only product
- Monomers are small, reactive molecules that react together to make the polymer
- A polymer is a long-chain molecule made up of many repeating units (monomers)
- In addition polymerisation reaction, the C-C double bond is broken to link together the monomers and form a polymer
- This is a common method to make plastics
The diagram shows a polymerisation reaction of ethene to poly(ethene)
The diagram shows a polymerisation reaction of propene to poly(propene)
- Other alkenes and substituted alkenes can also polymerise to make polymers with different properties
- Eg. poly(chloroethene), also known as PVC is the most versatile plastic used
Poly(chloroethene) is used as plastic