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Nitroxide-mediated controlled/living radical copolymerizations with macromonomers

机译:大分子单体的一氧化氮介导的受控/活性自由基共聚

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摘要

Nitroxide-mediated polymerization (NMP) of styrene using N-tert-butyl-N-[l-diethylphosphono-(2,2-dimethylpro-pyl)]nitroxide (SG1) in the presence of poly(styrene) macromonomers containing two different 2-carboalkoxy-2-propenyl (CH_2=C(CO_2R)CH_2-: R = Et, tBu) co-end groups proceeded in a controlled/living manner, as indicated by a continuous increase in the number average molecular weight with conversion giving values close to approximated theoretical values and efficient chain extension of the resultant branched polymers obtained. The polymerization rate decreased with increasing macromonomer content, but was independent of macromonomer co-end group. Replacing styrene by α,β,β-trideuterio-styrene (St-d_3) in copolymerizations with macromonomers allowed estimation of the reactivity ratio r_(St-d_3) to be 0.42 using ~1H NMR analysis. This was used to obtain an estimate of the theoretical number average molecular weight as a function of conversion and to calculate the microstructure of the gradient branched copolymers obtained.
机译:在含有两种不同2的聚苯乙烯大分子单体存在下,使用N-叔丁基-N- [1-二乙基膦酰基-(2,2-二甲基丙基)]硝基氧(SG1)进行苯乙烯的一氧化氮介导的聚合(NMP) -碳烷氧基-2-丙烯基(CH_2 = C(CO_2R)CH_2-:R = Et,tBu)的末端基团以受控/活性方式进行,这表明数均分子量不断增加,转化率给出值接近所获得的支化聚合物的近似理论值和有效的链增长。聚合速率随大分子单体含量的增加而降低,但与大分子单体的端基无关。在与大分子单体共聚的过程中,用α,β,β-三甲苯基苯乙烯(St-d_3)取代苯乙烯,可以使用〜1H NMR分析将反应率r_(St-d_3)估计为0.42。这用于获得作为转化率函数的理论数均分子量的估计值,并计算所得梯度支化共聚物的微观结构。

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