beta蒎烯与丙烯腈的RAFT自由基共聚合研究.pdfVIP

beta蒎烯与丙烯腈的RAFT自由基共聚合研究.pdf

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beta蒎烯与丙烯腈的RAFT自由基共聚合研究,聚丙烯酸刷raft,α蒎烯,β蒎烯,a蒎烯,α蒎烯标准,乙位蒎烯,蒎烯毒性,阿尔法蒎烯,甲位蒎烯

Conventional and RAFT Radical Copolymerization of -Pinene and Acrylonitrile Li Anlong, Liang Hui, Lu Jiang Department of Polymer and Materials Science, School of Chemistry and Chemical Engineering, Sun Yat-sen (Zhongshan) University, Guangzhou, China (510275) E-mail :gaofenzi@ Abstract The feasibility of radical copolymerization of  -pinene and acrylonitrile was clarified for the first time. The monomer reactivity ratios evaluated by Fineman-Ross method were rP = 0, rA = 0.66 in dichloroethane at 60 ˚C with AIBN. The reactivity ratio data show that the copolymerization was a “simple alternating copolymerization”, yielding polymers rich in acrylonitrile units and randomly alternated by single  -pinene unit. Furthermore, the possible controlled copolymerization of  -pinene and acrylonitrile was then attempted via the reversible addition-fragmentation transfer (RAFT) technique. At a low  -pinene/acrylonitrile feed ratio of 10/90 or 25/75, the copolymerization by using CPDB as the transfer agent displayed the typical features of “living” polymerization, such as first-order kinetics, a linear increase of the Mn with monomer conversions and low polydispersities ( 1.3). However, the “living” character could be observed only within certain overall monomer conversions. At higher overall conversions, the copolymerizations deviated from the living behavior probably due to the competitive degradative chain transfer of  -pinene. Keywords: -Pinene; acrylonitrile; RAFT; copolymerization 1 Introduction  -Pi

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