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Chain transfer by addition-fragmentation mechanism, 5 Investigation of the chain transfer activity of several ethyl 2-(substituted)cinnamates

✍ Scribed by Daniel Colombani; Philippe Chaumont


Publisher
John Wiley and Sons
Year
1995
Tongue
English
Weight
600 KB
Volume
196
Category
Article
ISSN
1022-1352

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✦ Synopsis


Abstract

A variety of ethyl 2‐(substituted)cinnamatesSystematic name: ethyl 3‐phenyl‐2‐(substituted)propenoate.

were synthesized and added to vinylic monomer polymerizations. These olefins are activated towards free radical addition and contain a homolytic leaving group in the allylic position. Thus, they exhibit chemical transfer properties in free radical polymerization. The compounds studied include bromide, iodide, sulfone, mercaptan and peroxide derivatives. Cinnamic iodide, however, exhibits degradative chain transfer activity. These compounds have an advantage over simple thiols in that they permit a good control of molar mass by an addition‐fragmentation mechanism involving difunctionalization of the resulting telomers. The methods of synthesis of ethyl 2‐(substituted)cinnamates are discussed through the nucleophilic substitution of various anions toward the allylic bromo derivative prepared from ethyl 2‐(α‐hydroxybenzyl)propenoate.


📜 SIMILAR VOLUMES


Chain transfer by addition-fragmentation
✍ Daniel Colombani; Jean-Philippe Lamps; Philippe Chaumont 📂 Article 📅 1998 🏛 John Wiley and Sons 🌐 English ⚖ 910 KB

Some substituted olefins and dienes bearing weak bonds located in appropriate locations were synthesized and added to vinylic monomer polymerization media, i. e., cumyl 4,6-heptadienyl peroxide (CHP), ethyl 5-cumylperoxy-5-methoxy-2-methylenehexanoate (ECMMH), 6-cumylperoxy-6-methoxy-3methylene-2-ox

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Ethyl 2-[ 1-(trimethylsilylperoxy)ethyl]propenoate 1, ethyl 2-[ 1-(dimethylvinylsilylperoxy)ethyllpropenoate 2, ethyl 2-[ 1-( l-(2-ethoxycarbonyl-l-methyl-2-propenylperoxysilyl)-l-methylethylperoxy)ethyl]propenoate 3, and 2-phenyl-2-trimethylsilylperoxypropane 4 were synthesized and added to the fre