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聚丙烯与噻吩和咪唑的交联

Cross-Linking of Polypropylene with Thiophene and Imidazole.

作者信息

Muljana Henky, Remerie Klaas, Boven Gert, Picchioni Francesco, Bose Ranjita K

机构信息

Department of Chemical Engineering, Parahyangan Catholic University, Ciumbuleuit 94, Bandung 40141, Indonesia.

Department of Chemical Engineering, ENTEG, University of Groningen, Nijenborgh 4, 9747 AG Groningen, The Netherlands.

出版信息

Polymers (Basel). 2022 May 28;14(11):2198. doi: 10.3390/polym14112198.

Abstract

In this work, two novel routes to synthesis cross-linked polypropylene (PP) are introduced by using two different precursors (2-thiophenemethyl amine (TMA) and 1-(3 aminopropyl) imidazole (API)), both cross-linked with 1,1'-(methylenedi-4,1-phenylene) bismaleimide (BM) at two different annealing temperature values ( = 50 °C and = 150 °C). Both Diels-Alder (DA) and Michael addition reactions were successfully performed with TMA and API, respectively, albeit with different reactivity. Imidazole clearly shows a higher reactivity compared to thiophene. In addition, an increase in annealing temperature leads to a higher degree of cross-linking. The highest degree of cross-linking was obtained by the imidazole product after annealing at 150 °C (IMG1A150) as evident from the highest complex viscosity (|η*|) value of IMG1A150. A difference in rheology and thermal properties between the imidazole and thiophene cross-linked products was also observed. However, both products have superior melt properties and thermal stability compared with the starting material. They show processability at high temperatures. The melt flow behavior and de-cross-linking at higher temperatures can be tuned depending on the choice of imidazole or thiophene. This study shows an advance on the cross-linked PP processing and its product performances for further application on the commercial scale.

摘要

在这项工作中,介绍了两条合成交联聚丙烯(PP)的新路线,使用两种不同的前体(2-噻吩甲胺(TMA)和1-(3-氨丙基)咪唑(API)),它们在两个不同的退火温度值(50°C和150°C)下均与1,1'-(亚甲基二-4,1-亚苯基)双马来酰亚胺(BM)交联。狄尔斯-阿尔德(DA)反应和迈克尔加成反应分别成功地用TMA和API进行,尽管反应活性不同。咪唑与噻吩相比明显显示出更高的反应活性。此外,退火温度的升高导致更高的交联度。从IMG1A150的最高复数粘度(|η*|)值可以明显看出,咪唑产物在150°C退火后(IMG1A150)获得了最高的交联度。还观察到咪唑和噻吩交联产物在流变学和热性能上的差异。然而,与起始材料相比,两种产物都具有优异的熔体性能和热稳定性。它们在高温下表现出可加工性。熔体流动行为和在较高温度下的去交联可以根据咪唑或噻吩的选择进行调节。这项研究表明在交联PP加工及其产品性能方面取得了进展,以便在商业规模上进一步应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f964/9182647/2f6a79ead0ae/polymers-14-02198-sch001a.jpg

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