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首页> 外文期刊>ACS Omega >Cross-Linked Networks in Poly(propylene carbonate) by Incorporating (Maleic Anhydride/cis-1,2,3,6-Tetrahydrophthalic Anhydride) Oligomer in CO2/Propylene Oxide Copolymerization: Improving and Tailoring Thermal, Mechanical, and Dimensional Properties
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Cross-Linked Networks in Poly(propylene carbonate) by Incorporating (Maleic Anhydride/cis-1,2,3,6-Tetrahydrophthalic Anhydride) Oligomer in CO2/Propylene Oxide Copolymerization: Improving and Tailoring Thermal, Mechanical, and Dimensional Properties

机译:通过在CO 2 /环氧丙烷共聚中掺入(马来酸酐/ CIS-1,2,3,6-四氢邻溴酸酐)寡聚体通过掺入(马来酸酐/ CIS-1,2,3,6-四氢苯基酸酐)的交联网络:改善和剪裁热,机械和尺寸特性

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Poly(propylene carbonate) (PPC) from CO_(2) and propylene oxide (PO) has wide potential applications as a degradable “plastic”. However, the thermal stability and mechanical properties of PPC cannot meet most of the application requirements. Herein, we focus on improving these properties. A (maleic anhydride/cis -1,2,3,6-tetrahydrophthalic anhydride) (MA/THPA) oligomer containing several cyclocarboxylic anhydride groups, which can copolymerize with PO, has been readily synthesized and used as the third comonomer to prepare PPC with cross-linked networks. The gel contents increase from 16 to 42% with increasing MA/THPA oligomer feed contents from 0.5 to 4 wt % of PO. The formation of cross-linked networks in PPC greatly improves the thermal, mechanical, and dimensional properties. The 5% weight-loss degradation temperature increases from 217 °C to nearly 290 °C before and after cross-linking, which ensures that PPC does not decompose in melt processing. The tensile strength of the copolymer is in the range of 22.2–44.3 MPa with elongation at break of 11–312%. The maximum tensile strength is improved by 143% compared to that of PPC. When the MA/THPA oligomer feed is above 3 wt % of PO, the hot-set elongation of the copolymer at 65 °C decreases more than 10 times when compared with that of PPC, and the permanent deformation is close to 0, while it is 145% for PPC. The dimensional stability is improved sharply. It can overcome the cold flow phenomenon of PPC. The improvement of the above comprehensive properties is of great significance to the practical application of PPC in various fields.
机译:来自CO_(2)和环氧丙烷(PO)的聚(碳酸亚丙酯)(PPC)具有宽的潜在应用,作为可降解的“塑料”。然而,PPC的热稳定性和机械性能不能满足大部分应用要求。在此,我们专注于改善这些属性。 (含有几种环羧酸酐基团的(马来酸酐/ CIIGORIGOR)(MA / THPA)低聚物,其可与PO共聚,其与PO共聚,并用作第三个共聚单体用交联网络准备PPC。凝胶含量从0.5-4wt%的0.5至4wt%的MA / THPA低聚物饲料含量增加到16至42%。 PPC中交联网络的形成大大改善了热,机械和尺寸特性。在交联之前和之后,5%的减重降解温度从217℃增加到接近290℃,这确保了PPC在熔体加工中不分解。共聚物的拉伸强度在22.2-44.3MPa的范围内,断裂伸长率为11-312%。与PPC相比,最大拉伸强度提高了143%。当MA / THPA低聚物进料在3wt%的PO的3wt%时,与PPC的PPC相比,65℃的共聚物的热固化伸长率降低超过10倍,永久变形接近0,而且PPC为145%。尺寸稳定性急剧提高。它可以克服PPC的冷流现象。提高上述综合性质对PPC在各种领域的实际应用方面具有重要意义。

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