Silvano Selena, Proverbio Matteo, Vignali Adriano, Bertini Fabio, Boggioni Laura
Institute of Chemical Science and Technologies-"G. Natta", National Research Council, Via A. Corti 12, 20133 Milan, Italy.
National Interuniversity Consortium of Materials Science and Technology, INSTM, Via Giuseppe Giusti 9, 50121 Firenze, Italy.
Polymers (Basel). 2023 Jun 24;15(13):2801. doi: 10.3390/polym15132801.
Polyesters with a high glass transition temperature above 130 °C were obtained from limonene oxide (LO) or vinylcyclohexene oxide (VCHO) and phthalic anhydride (PA) in the presence of commercial salen-type complexes with different metals-Cr, Al, and Mn-as catalysts in combination with 4-(dimethylamino) pyridine (DMAP), bis-(triphenylphosphorydine) ammonium chloride (PPNCl), and bis-(triphenylphosphoranylidene)ammonium azide (PPNN) as cocatalysts via alternating ring-opening copolymerization (ROCOP). The effects of the time of precontact between the catalyst and cocatalyst and the polymerization time on the productivity, molar mass (), and glass transition temperature () were evaluated. The polyesters were characterized by a molar mass () of up to 14.0 kg/mol, a narrow dispersity of up to 136 °C, and low (<3 mol%) polyether units. For poly(LO--PA) copolymers, biodegradation tests were performed according to ISO 14851 using the respirometric biochemical oxygen demand method. Moreover, the vinyl double bond present in the poly(LO--PA) copolymer chain was functionalized using three different thiols, methyl-3-mercaptopropionate, isooctyl-3-mercaptopropionate, and butyl-3-mercaptopropionate, via a click chemistry reaction. The thermal properties of poly(LO--PA), poly(VCHO--PA) and thiol-modified poly(LO--PA) copolymers were extensively studied by DSC and TGA. Some preliminary compression molding tests were also conducted.
在具有不同金属(铬、铝和锰)的商业萨伦型配合物作为催化剂,并与4-(二甲基氨基)吡啶(DMAP)、双(三苯基磷酰基)氯化铵(PPNCl)和双(三苯基磷亚基)叠氮化铵(PPNN)作为助催化剂的情况下,通过交替开环共聚(ROCOP),由氧化柠檬烯(LO)或氧化乙烯基环己烯(VCHO)与邻苯二甲酸酐(PA)制得玻璃化转变温度高于130℃的聚酯。评估了催化剂与助催化剂预接触时间和聚合时间对生产率、摩尔质量()和玻璃化转变温度()的影响。这些聚酯的特征在于摩尔质量()高达14.0 kg/mol、分散度窄、高达136℃,且聚醚单元含量低(<3 mol%)。对于聚(LO--PA)共聚物,根据ISO 14851采用呼吸测定生化需氧量法进行了生物降解测试。此外,聚(LO--PA)共聚物链中存在的乙烯基双键通过点击化学反应使用三种不同的硫醇(甲基-3-巯基丙酸酯、异辛基-3-巯基丙酸酯和丁基-3-巯基丙酸酯)进行了官能化。通过DSC和TGA对聚(LO--PA)、聚(VCHO--PA)和硫醇改性聚(LO--PA)共聚物的热性能进行了广泛研究。还进行了一些初步的压缩成型测试。