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Youqing Shen Departments of Chemical Engineering and

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1 Atom Transfer Radical Polymerization (ATRP): Concept, Application, Challenges and Future Development
Youqing Shen Departments of Chemical Engineering and Materials Science and Engineering McMaster University Hamilton, Ontario, CANADA L8S 4L7

2 Living Polymerization
Mn [M]0 Conv. Mm Mn= [I]0 Conversion Mn Structure

3 Radical reactions ?

4 Suppressing radical termination
Rt/Rp =kt [P•]2/kp[M][P•] =kt[P•]/kp[M]

5

6 ATRP Systems Metal Ligand Initiator CuBr, CuCl Bipyridine
Multidentate amine RuBr PPh3 + Al(OiPr)3 FeBr PPh3 NiBr PPh3 PdBr PPh3

7 A: Synthesis of polymers with controlled molecular weight
2. ATRP Applications A: Synthesis of polymers with controlled molecular weight A: PS standard B: PS by ATRP C: PS by AIBN Patten, T.E., Xia, J, Abernathy, T., Matyjaszewki, K. Science 1996, 272, 866.

8 Factors affecting the molecular weight control
Fast initiation Rapid deactivation Narrow MWD

9 C-XInitiator  C-Xpolymer
Initiator matches Monomer

10 Rapid deactivation Kp - Temperature Conv.-can not go too high

11 B: Synthesis block copolymers
Macroinitiator method

12 C: Synthesis of star polymers
Matyjaszewski, K., Miller, P. J. Pyun, J. Kickelbick, G. Diaamanti, Macromolecules 1999, 32, 6526

13 D: Hyperbranched Polymers
Monomer-Initiator

14

15 E. Synthesis of End-functionalized Polymers

16 Challenges for ATRP

17 Solution to the Problem ?
Catalyst supporting

18 Mn and PDI vs conversion in MMA polymerization by supported catalysts
Haddleton, Chem. Commun. 1999, 99.

19 WHY?

20 Future development Develop high reactive catalysts


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