Synthesis and Characterization of Anethole-lauryl Methacrylate Copolymer via Cationic Polymerization

Q3 Chemistry Molekul Pub Date : 2023-11-20 DOI:10.20884/1.jm.2023.18.3.7078
D. S. Handayani, Alfia Uke Tahara, M. Firdaus, V. Suryanti, T. Kusumaningsih, S. D. Marliyana, Fajar Rakhman Wibowo, M. Wartono
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Abstract

The synthesis of anethole-lauryl methacrylate (LMA) copolymer had been carried out by cationic polymerization using BF3O(C2H5)2 as the initiator without the use of solvent at room temperature (28-30 °C) over atmospheric N2 conditions. Polymerization was conducted by varying LMA concentration i.e. 2%, 4%, and 6%, (w/w) with respect to the anethole weight. Structural determination of co-poly(anethole-LMA) was done using FTIR and 1H-NMR spectrophotometer. The relative molecular weight (Mv) of co-poly (anethole-LMA) was measured by an Ostwald Viscometer at room temperature. Morphological characterization and surface area analysis of co-poly(anethole-LMA) was performed using SEM and SAA, respectively. The successful synthesis of co-poly(anethole-LMA) was proven by the disappearance of vinyl group absorption at 1696, 1638, 965, and 938 cm-1 of the FTIR spectra, as well as the loss of vinyl group proton signals at 6.4-5.5 ppm in the 1H-NMR spectra. Increasing the weight of the LMA affected the characteristics of co-poly(anethole-LMA). The relative molecular weight of co-poly(anethole-LMA) was found to rise by increasing the weight of LMA. The Mv of co-poly(anethole-LMA) 2%, 4%, and 6% were 32378.62, 50611.05, and 65133.79 g/mol, respectively. The morphology of co-poly(anethole-LMA) showed that the surface distance between particles was getting tighter and the highest surface area in co-poly(Anethole-LMA) 6% was 233.80 m2/g.
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通过阳离子聚合合成茴香醚-十二烷基甲基丙烯酸酯共聚物及其表征
以 BF3O(C2H5)2 为引发剂,在常温(28-30 °C)、常压 N2 条件下,不使用溶剂,通过阳离子聚合法合成了茴香醚-甲基丙烯酸月桂酯(LMA)共聚物。聚合是通过改变 LMA 的浓度进行的,即相对于茴香醚重量的 2%、4% 和 6%(重量比)。使用傅立叶变换红外光谱仪和 1H-NMR 分光光度计测定了共聚(茴酮-LMA)的结构。共聚(茴香醚-LMA)的相对分子量(Mv)是在室温下用奥斯特瓦尔德粘度计测量的。利用 SEM 和 SAA 分别对共聚(茴香孔-LMA)进行了形态学表征和表面积分析。傅立叶变换红外光谱中 1696、1638、965 和 938 cm-1 处的乙烯基吸收消失,以及 1H-NMR 光谱中 6.4-5.5 ppm 处的乙烯基质子信号消失,证明共聚(茴香孔-LMA)的合成成功。增加 LMA 的重量会影响共聚(茴香醚-LMA)的特性。随着 LMA 重量的增加,共聚(茴酮-LMA)的相对分子质量也随之增加。2% 、4% 和 6% 的共聚(茴酮-LMA)的 Mv 分别为 32378.62、50611.05 和 65133.79 g/mol。共聚(茴酮-LMA)的形态显示,颗粒之间的表面距离越来越紧密,共聚(茴酮-LMA)6% 的最高表面积为 233.80 m2/g。
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来源期刊
Molekul
Molekul Chemistry-Chemistry (all)
CiteScore
1.30
自引率
0.00%
发文量
31
审稿时长
4 weeks
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