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Influence of Co-Catalysts and Polymerization Conditions on Properties of Poly(anhydride-alt-epoxide)s from ROCOP Using Salen Complexes with Different Metals

机译:助催化剂和聚合条件对不同金属Salen配合物对ROCOP聚酸酐-环氧化合物性能的影响

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摘要

Cyclohexene oxide (CHO) and phthalic anhydride (PA) have been reacted in the presence of commercial salen–type complexes with different metals Cr (>1), Al (>2), and Mn (>3) in combination with 4-(dimethylamino) pyridine (DMAP), bis-(triphenylphosphorydine) ammonium chloride (PPNCl) and bis-(triphenylphosphoranylidene)ammonium azide (PPNN3) as co-catalysts to obtain alternating poly(PA-alt-CHO)s by ring-opening copolymerization (ROCOP). The effect of different reaction conditions (pre-contact between catalyst and co-catalyst, polymerization time) on the productivity, molecular weight and glass transition temperature has been evaluated. By using a 24 h pre-contact, the aliphatic polyesters obtained were characterized by high molecular weight (Mn > 15 kg/mol) and glass transition temperature (Tg) up to 146 °C; the more sustainable metals Al and Mn in the presence of PPNCl give comparable results to Cr. Moreover, biodegradability data of these polyesters and the study of the microstructure reveal that the biodegradability is influenced more by the type of chain linkages rather than by the molecular weight of the polyesters.
机译:环己烯氧化物(CHO)和邻苯二甲酸酐(PA)在商业销售的Salen型配合物与不同金属Cr(> 1 ),Al(> 2 ),和Mn(> 3 )与4-(二甲基氨基)吡啶(DMAP),双-(三苯基膦基)氯化铵(PPNCl)和双-(三苯基膦基亚烷基)叠氮化铵(PPNN3)组合使用通过开环共聚(ROCOP)获得交替的聚(PA-ALT-CHO)。评估了不同反应条件(催化剂和助催化剂之间的预接触,聚合时间)对生产率,分子量和玻璃化转变温度的影响。通过使用24小时预接触,获得的脂族聚酯具有高分子量(Mn> 15 kg / mol)和玻璃化转变温度(Tg)高达146°C的特征。在PPNCl存在下,更具可持续性的金属Al和Mn的结果与Cr相当。而且,这些聚酯的生物降解性数据和微观结构的研究表明,生物降解性受链键类型的影响更大,而不是受到聚酯分子量的影响。

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