Illés Gergely, Németh Csaba, Hidas Karina Ilona, Surányi József, Tóth Adrienn, Pajor Ferenc, Póti Péter
Institute of Animal Sciences, Hungarian University of Agriculture and Life Sciences, Páter Károly 1, 2100 Gödöllő, Hungary.
Capriovus Ltd., 2317 Szigetcsép, Hungary.
Polymers (Basel). 2022 Jul 8;14(14):2795. doi: 10.3390/polym14142795.
Thanks to the polymer revolution of the 20th century, plastics are now part of our everyday lives. We use plastics as naturally as if they had always been an integral part of our lives. However, in the recent past, we were still predominantly using wood, metal, and glass objects, which were replaced by plastic products at an explosive rate. In many cases, this replacement has resulted in products with better physical, chemical, or biological properties. The changeover was too rapid, and the consequences were not recognized in time. This is evidenced by the huge scale of plastic pollution worldwide today. It is therefore in the interests of the future of both humans and animals that we must pay particular attention to the direct and indirect environmental impact of plastics introduced in animal husbandry. Starting from the tetrafunctional initiator produced as the first step of my work, poly(-butyll acrylate) star polymers of different molecular weights were synthesized by atom transfer radical polymerization, using the so-called "core first" method. The bromine chain end of the produced star polymers was replaced by an azide group using a substitution reaction. Propalgyl telechelic PEGs were synthesized as a result of lattice end modification of poly(ethylene glycol) with different molecular weights. The azidated star polymers were connected with propalgyl telechelic PEGs using Huisgen's "click" chemical process, and as a result of the "click" connection, amphiphilic polymer networks with several different structures were obtained.
得益于20世纪的聚合物革命,塑料如今已成为我们日常生活的一部分。我们使用塑料时自然而然,仿佛它们一直是我们生活中不可或缺的一部分。然而,在不久之前,我们仍主要使用木材、金属和玻璃制品,而塑料制品正以惊人的速度取而代之。在许多情况下,这种替换带来了具有更好物理、化学或生物学性能的产品。转变过于迅速,其后果未能及时得到认识。如今全球范围内塑料污染的巨大规模就证明了这一点。因此,为了人类和动物的未来,我们必须特别关注畜牧业中引入的塑料对环境的直接和间接影响。从我工作的第一步所制备的四官能引发剂出发,采用所谓的“先核法”,通过原子转移自由基聚合合成了不同分子量的聚(丙烯酸丁酯)星形聚合物。利用取代反应,将制得的星形聚合物的溴链端替换为叠氮基。通过对不同分子量的聚乙二醇进行晶格端基改性,合成了炔丙基遥爪聚乙二醇。利用惠斯根的“点击”化学过程,将叠氮化星形聚合物与炔丙基遥爪聚乙二醇相连,通过“点击”连接,得到了几种不同结构的两亲性聚合物网络。