1992Makromolekulare Chemie Macromolecular SymposiaRequires access

Stereochemistry of oligomers in stereospecific and conformational specific ionic polymerizations

Otto Vogl, C. Michael Garner, William J. Simonsick, Christoph Kratky, Koichi Ute, Koichi Hatada

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Abstract

Abstract Low molecular weight oligomers of methyl methacrylate (MMA) and perhaloacetaldehyde were studied as to their composition, end groups and stereochemistry. The oligomerization of methyl methacrylate can be directed toward almost pure isotactic or toward almost syndiotactic oligomers depending upon the intitiating system used. Perhaloacetaldehydes showed a stereospecificity which depended upon the size and bulkiness of the side group in the polymer chain. There is no dependence of the sterospecificity based on the initiating system and only isotactic polymers could be obtained which are not only stereospecific but also conformationally specific giving conformational specific isotactic 4/1 helices.

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Abstract Low molecular weight oligomers of methyl methacrylate (MMA) and perhaloacetaldehyde were studied as to their composition, end groups and stereochemistry. The oligomerization of methyl methacrylate can be directed toward almost pure isotactic or toward almost syndiotactic oligomers depending upon the intitiating system used. Perhaloacetaldehydes showed a stereospecificity which depended upon the size and bulkiness of the side group in the polymer chain. There is no dependence of the sterospecificity based on the initiating system and only isotactic polymers could be obtained which are not only stereospecific but also conformationally specific giving conformational specific isotactic 4/1 helices.

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Available abstract

Abstract Low molecular weight oligomers of methyl methacrylate (MMA) and perhaloacetaldehyde were studied as to their composition, end groups and stereochemistry. The oligomerization of methyl methacrylate can be directed toward almost pure isotactic or toward almost syndiotactic oligomers depending upon the intitiating system used. Perhaloacetaldehydes showed a stereospecificity which depended upon the size and bulkiness of the side group in the polymer chain. There is no dependence of the sterospecificity based on the initiating system and only isotactic polymers could be obtained which are not only stereospecific but also conformationally specific giving conformational specific isotactic 4/1 helices.

Key concepts: Tacticity, Stereospecificity, Polymer chemistry, Polymer, Ionic bonding, Chemistry, Methyl methacrylate, Side chain

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