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苯氧基亚胺钛催化降冰片烯与1-辛烯共聚合 被引量:1
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作者 孟嘉锋 倪旭峰 +1 位作者 郑豪 沈之荃 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2018年第8期1853-1858,共6页
以3,5-二叔丁基水杨醛缩苯胺氯化钛(Ti)、三异丁基铝(Al)和四(五氟苯基)硼酸三苯基甲酯(B)组成的三元催化体系实现了降冰片烯(NBE)与1-辛烯(OC)的共聚合,得到NOC无规共聚物.探索了催化剂组成、聚合时间及聚合温度等对共聚合反应的影响.... 以3,5-二叔丁基水杨醛缩苯胺氯化钛(Ti)、三异丁基铝(Al)和四(五氟苯基)硼酸三苯基甲酯(B)组成的三元催化体系实现了降冰片烯(NBE)与1-辛烯(OC)的共聚合,得到NOC无规共聚物.探索了催化剂组成、聚合时间及聚合温度等对共聚合反应的影响.结果表明,当n(Al)/n(Ti)=5∶1,n(B)/n(Ti)=1∶1,n(Monomer)/n(Ti)=400∶1,n(NBE)/n(OC)=5∶5时,于40℃在甲苯中聚合6 h,共聚合产率达到43.7%,2种单体的竞聚率分别为rNBE=3.01;rOC=0.08.改变助催化剂三异丁基铝的用量可在一定范围内调节所得NOC无规共聚物的分子量及分子量分布(MWD),得到Mw=3.0×104~6.5×104,MWD=1.91~2.45的NOC共聚物.NOC无规共聚物具有饱和的主链结构且带有较长的侧链,其玻璃化转变温度较高(约87~174℃),并对NOC无规共聚物组成具有很强依赖性.NOC共聚物的热分解温度超过300℃,热稳定性能优异. 展开更多
关键词 苯氧基亚胺钛 降冰片烯 1-辛烯 无规共聚物 热稳定性
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n-Octyloxyallene homopolymerization and random copolymerization with styrene using catalyst system composed of lanthanide Schiff-base complexes and Al(i-Bu)_3
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作者 JIAO JunQing ZHU WeiWei +1 位作者 ni xufeng SHEN ZhiQuan 《Science China Chemistry》 SCIE EI CAS 2013年第7期970-976,共7页
The catalyst system composed of lanthanide Schiff-base complexes with [3,5-tBu2-2-(O)C6H2CH=NC6Hs]3Ln(THF)(Ln(Salen)3, Ln = Sc, Y, La, Nd, Sm, Gd, Yb) and triisobutyl aluminum shows high activity for n-octylox... The catalyst system composed of lanthanide Schiff-base complexes with [3,5-tBu2-2-(O)C6H2CH=NC6Hs]3Ln(THF)(Ln(Salen)3, Ln = Sc, Y, La, Nd, Sm, Gd, Yb) and triisobutyl aluminum shows high activity for n-octyloxyallene (A) homopolymerization with narrow molecular weight distribution (MWD). The influences of reaction conditions on polymerization behavior are in- vestigated, and poly(n-octyloxyallene) has a weight average molecular weight (Mw) of 20.6 ~ 103 with MWD of 1.39 and 100% yield is obtained under the optimum conditions: [A1]/[Y] = 50 mol/mol, [A]/[Y] = 100 mol/mol, with polymerization at 80 ~C for 16 h in bulk. The kinetic studies of n-octyloxyallene homopolymerization indicate that the polymerization rate is first-order with respect to the monomer concentration and shows some controlled polymerization characteristics. Random co- polymer of n-octyloxyallene with styrene is obtained by using the same binary catalyst system; the reactivity ratios of the comonomer determined by Kelen-Ttld/Ss method are rA = 1.20 and rst = 0.35, respectively, the ratio of each segment and Mw of the resulting copolymer could be controlled by varying the feed ratio of each monomer. Determined by differential scanning calorimetry, the copolymers obtained show only one glass transition temperature, which increases gradually with the increase of styrene content in the copolymer. 展开更多
关键词 n-octyloxyallene STYRENE LANTHANIDE SCHIFF-BASE coordination polymerization
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