Cationic polymerization of 2,2-bis{4-[(2-vinyloxy)ethoxy]phenyl}propane [CH 2 ACHOOOCH 2 CH 2 OOC 6 H 4 OC(CH 3 ) 2 OC 6 H 4 OOCH 2 CH 2 OOOCHACH 2 ; 2], a divinyl ether with oxyethylene units adjacent to the polymerizable vinyl ether groups and a bulky central spacer, was investigated in CH 2 Cl 2
Gel formation in cationic polymerization of divinyl ethers. I. 1,4-Bis(2-vinyloxyethoxy)benzene
โ Scribed by Tamotsu Hashimoto; Toshiaki Kanai; Toshiyuki Kodaira
- Publisher
- John Wiley and Sons
- Year
- 1998
- Tongue
- English
- Weight
- 257 KB
- Volume
- 36
- Category
- Article
- ISSN
- 0887-624X
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โฆ Synopsis
Polymerization of 1,4-bis(2-vinyloxyethoxy)benzene (CH 2 |CH{O{CH 2 -CH 2 {O{C 6 H 4 {O{CH 2 CH 2 {O{CH|CH 2 ; 1) was investigated in CH 2 Cl 2 at 0ะC with the use of a variety of cationic initiators. SnCl 4 , SnBr 4 , AlEtCl 2 , and BF 3 OEt 2 (strong Lewis acids) and CF 3 SO 3 H (a strong protonic acid) yielded crosslinked insoluble polymers immediately after the polymerizations were initiated. The binary initiating systems such as HCl/ZnCl 2 and (C 6 H 5 O) 2 P(O)OH/ZnCl 2 also produced insoluble poly( 1)s. At the low initial concentration of ZnCl 2 , however, the (C 6 H 5 O) 2 P(O)OH/ ZnCl 2 system gave the soluble polymers quantitatively, and gelation occurred only when the reaction mixture was stored for a long time after complete consumption of the monomer. The content of the unreacted pendant vinyl ether groups of the soluble polymers decreased with monomer conversion, and almost all the pendant vinyl ether groups were consumed in the soluble polymer obtained at 100% monomer conversion; this may be ascribed to frequent occurrence of intramolecular crosslinking.
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