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Cationic ring-opening transfer polymerization of spiro ortho esters initiated by carbon black
Authors:Norio Tsubokawa  Shingo Ohshima  Yasuo Sone  Takeshi Endo
Abstract:The ring-opening transfer polymerization of spiro ortho esters (SOE) initiated by carbon black was investigated. In the absence of carbon black, no polymerization occurred at all. In the presence of channel black containing carboxyl group, the ring-opening transfer polymerization of SOE was initiated at 50-70°C. to give polyether ester, namely alternating copolymer of epoxide and lactone. The rate of polymerization of 1,4,6-trioxaspiro4.4]nonane and 1,4,6-trioxaspiro4.5]decane was considerably small compared with that of 1,4,6-trioxaspiro4.6]undecane. The activation energy of the polymerization of 2-chloromethyl-1,4,6-trioxaspiro4.6]undecane was estimated to be 6.0 kcal/mol. The initiating activity of carbon black increased with an increase in carboxyl group content of carbon black. Furnace black that contained no carboxyl group was unable to initiate the polymerization. Furthermore, the carbon black lost the initiating ability of the polymerization upon the blocking of carboxyl group on the surface by the treatment with potassium hydroxide or diazomethane. Based on these results, it was concluded that carboxyl group on carbon black plays an important role in the initiation. During the polymerization, a part of the polymer formed was grafted onto carbon black: the grafting ratio was 10–30%. The mechanisms of initiation and grafting were discussed.
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