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Synthesis of Eugenol-Lauryl Methacrylate Copolymers via Cationic Polymerization

机译:通过阳离子聚合合成丁烯醇 - 月桂基甲基丙烯酸酯共聚物

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Eugenol is one of the most abundant natural resources in Indonesia. The recently bio-based polymer resin is created based on eugenol because eugenol is functionalized with the polymerizable group. In order to improve the functional properties of eugenol, in this research Eugenol-Lauryl Methacrylate copolymers (co-poly(Eg-LMA)) were synthesized by cationic polymerization using H2SO4 as an initiator under the nitrogen atmosphere. Structure identification of the copolymer showed the absorption of the vinyl group from the monomers disappear at the analysis through FTIR at the wave number 1637-1639 and 985-995 cm~(-1) and also ~1H-NMR on the chemical shift 5,97 and 5,08 ppm. The resulting copolymers obtained brown powder in 32.03 % yieldsand melting point at 96 - 97 °C. Solubility test of the co-poly(Eg-LMA) showed that the polymer couldnot soluble in water but soluble in chloroform, diethyl ether, and benzene. Average molecular weight of co-poly(Eg-LMA) Led Ostwald viscometry was obtained 42020 with the degree of polymerization by 200.
机译:丁烯醇是印度尼西亚最丰富的自然资源之一。最近的生物基聚合物树脂是基于丁香酚产生的,因为丁醇与可聚合基团官能化。为了改善丁烯醇的功能性质,在本研究中,通过使用H 2 SO 4作为氮气氛下的引发剂,通过阳离子聚合来合成丁香糖 - 月桂基共聚物(共聚LMA))。共聚物的结构鉴定表明,通过在波数1637-1639和985-995cm〜(-1)的FTIR中,在分析中,在分析中消失,在化学换档5上的〜1H-NMR中,将乙烯基从单体中消失。 97和5,08 ppm。得到的共聚物在96-97℃下得到32.03%的熔点棕色粉末。共聚(EG-LMA)的溶解度试验表明,聚合物可能溶于水,但可溶于氯仿,乙醚和苯。得到共聚的平均分子量(例如,LED OSTWALD粘度粘度法,得到42020,聚合程度为200。

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