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POLYMERS
‘Approximately 80% of the organic chemical industry is
devoted to the production of synthetic polymers.’
What is a polymer?
 Polymers are large molecules made up small
repeating units
 Monomers
 Monomers are linked together in a polymerization
reaction
 Homopolymer: polymer involving a single type of
monomer
 Copolymer: polymer made up of 2 or more different
types of monomers
 Polymers are widely abundant and may be natural or
synthetic
 Examples include: rubber, nylon, polyvinyl chloride
(PVC), polyethylene, Teflon, Kevlar, carbohydrates,
proteins, DNA
Addition Polymers
 Addition polymers result from addition reactions
of monomers containing carbon-carbon double
bonds
 All atoms in the monomer are kept in the
polymer
 Some examples include: polyethene,
polypropene, polyvinyl chloride, polystyrene and
Teflon
C C C C C C+ + C C C C C C
ethene etheneethene
polyethene or polyethylene
C C
n
OR
Example
Substituted Groups & Polymers
 The reactivity, solubility and strength of a polymer is
due to the groups that are attached to the polymer
chain
 Chloro, methyl, cyano, phenyl, etc.
 Teflon (polytetrafluoroethane) for example is very
unreactive because the C-F is very strong
Substituted Groups & Polymers
 Polypropene (Polypropylene)
 Polyvinyl chloride (PVC)
 Polyvinyl benzene (Polystyrene)
Plastics – Special Addition Polymers
 Plastic: synthetic substance that can be
moulded, generally under heat and pressure,
that retains its given shape
 Chemically unreactive - stable single bonds
 Flexible and mouldable solids or viscous liquids -
van der Waals forces of attraction that exist
within them
 Soft & flexible when heated as heat increases
molecular motion and allows chains to slide past
one another
 Cause major environmental issues
 http://www.youtube.com/watch?v=GLgh9h2ePYw
Crosslinking = Strength
 Monomers that contain 2 double bonds (dienes)
are able to add to other molecules in two ways
 A single monomer can be incorporated into 2
different polymer chains causing bridges
between the polymer chains
 Bridges are called crosslinks and may be
formed intermittently along the polymer chains.
 These links between polymer chains are
covalent bonds and are much stronger than the
van Der Waals forces that would otherwise hold
the chains together
1,4-diethylbenzene + polystyrene
Crosslinking = Strength
 As the degree of crosslinking increases so does
the strength of the molecule.
 A high degree of crosslinking will also make the
polymers heat resistant and more elastic.
 Crosslinks may also be formed with inorganic
crosslinking agents such as sulfur.
Disulfide Bridges (Vulcanization)
Condensation Polymers
 Condensation polymers are formed when monomers
are linked together through condensation reactions
(removal of water)
 Examples: polyester, nylon, proteins, carbohydrates
and Kevlar
 2 most common types:
 Polyesters (ester linkages between hydroxyl and carboxyl
groups)
 Polyamides (amide linkages between an amine and a
carboxylic acid)
Examples of Polyester from Same
Monomer
 General reaction:
Examples of Polyesters from 2 Different
Monomers
 General reaction:
 Dacron (polyethene terephthalate):
Example of Polyamide
 Nylon 6,6
Homework 
 Page 83 # 1 – 4
 Page 87 # 1 – 3
 Page 93 # 1 – 5
 Page 98 # 1
 Page 99 # 1 – 6

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Tang 12 polymers

  • 1. POLYMERS ‘Approximately 80% of the organic chemical industry is devoted to the production of synthetic polymers.’
  • 2. What is a polymer?  Polymers are large molecules made up small repeating units  Monomers  Monomers are linked together in a polymerization reaction  Homopolymer: polymer involving a single type of monomer  Copolymer: polymer made up of 2 or more different types of monomers  Polymers are widely abundant and may be natural or synthetic  Examples include: rubber, nylon, polyvinyl chloride (PVC), polyethylene, Teflon, Kevlar, carbohydrates, proteins, DNA
  • 3. Addition Polymers  Addition polymers result from addition reactions of monomers containing carbon-carbon double bonds  All atoms in the monomer are kept in the polymer  Some examples include: polyethene, polypropene, polyvinyl chloride, polystyrene and Teflon C C C C C C+ + C C C C C C ethene etheneethene polyethene or polyethylene C C n OR Example
  • 4. Substituted Groups & Polymers  The reactivity, solubility and strength of a polymer is due to the groups that are attached to the polymer chain  Chloro, methyl, cyano, phenyl, etc.  Teflon (polytetrafluoroethane) for example is very unreactive because the C-F is very strong
  • 5. Substituted Groups & Polymers  Polypropene (Polypropylene)  Polyvinyl chloride (PVC)  Polyvinyl benzene (Polystyrene)
  • 6. Plastics – Special Addition Polymers  Plastic: synthetic substance that can be moulded, generally under heat and pressure, that retains its given shape  Chemically unreactive - stable single bonds  Flexible and mouldable solids or viscous liquids - van der Waals forces of attraction that exist within them  Soft & flexible when heated as heat increases molecular motion and allows chains to slide past one another  Cause major environmental issues  http://www.youtube.com/watch?v=GLgh9h2ePYw
  • 7. Crosslinking = Strength  Monomers that contain 2 double bonds (dienes) are able to add to other molecules in two ways  A single monomer can be incorporated into 2 different polymer chains causing bridges between the polymer chains  Bridges are called crosslinks and may be formed intermittently along the polymer chains.  These links between polymer chains are covalent bonds and are much stronger than the van Der Waals forces that would otherwise hold the chains together
  • 9. Crosslinking = Strength  As the degree of crosslinking increases so does the strength of the molecule.  A high degree of crosslinking will also make the polymers heat resistant and more elastic.  Crosslinks may also be formed with inorganic crosslinking agents such as sulfur.
  • 11. Condensation Polymers  Condensation polymers are formed when monomers are linked together through condensation reactions (removal of water)  Examples: polyester, nylon, proteins, carbohydrates and Kevlar  2 most common types:  Polyesters (ester linkages between hydroxyl and carboxyl groups)  Polyamides (amide linkages between an amine and a carboxylic acid)
  • 12. Examples of Polyester from Same Monomer  General reaction:
  • 13. Examples of Polyesters from 2 Different Monomers  General reaction:  Dacron (polyethene terephthalate):
  • 15. Homework   Page 83 # 1 – 4  Page 87 # 1 – 3  Page 93 # 1 – 5  Page 98 # 1  Page 99 # 1 – 6