Salih Ashraf M, Ahmad Mansor Bin, Ibrahim Nor Azowa, Dahlan Khairul Zaman Hj Mohd, Tajau Rida, Mahmood Mohd Hilmi, Yunus Wan Md Zin Wan
Department of Chemistry, Faculty of Science, University Putra Malaysia, UPM, Serdang 43400, Selangor, Malaysia.
Department of Radiation Processing, Sudan Atomic Energy Commission, Khartoum 1111, Sudan.
Molecules. 2015 Aug 4;20(8):14191-211. doi: 10.3390/molecules200814191.
Over the past few decades, there has been an increasing demand for bio-based polymers and resins in industrial applications, due to their potential lower cost and environmental impact compared with petroleum-based counterparts. The present research concerns the synthesis of epoxidized palm oil acrylate (EPOLA) from an epoxidized palm oil product (EPOP) as environmentally friendly material. EPOP was acrylated by acrylic acid via a ring opening reaction. The kinetics of the acrylation reaction were monitored throughout the reaction course and the acid value of the reaction mixture reached 10 mg KOH/g after 16 h, indicating the consumption of the acrylic acid. The obtained epoxy acrylate was investigated intensively by means of FTIR and NMR spectroscopy, and the results revealed that the ring opening reaction was completed successfully with an acrylation yield about 82%. The UV free radical polymerization of EPOLA was carried out using two types of photoinitiators. The radiation curing behavior was determined by following the conversion of the acrylate groups. The cross-linking density and the hardness of the cured EPOLA films were measured to evaluate the effect of the photoinitiator on the solid film characteristics, besides, the thermal and mechanical properties were also evaluated.
在过去几十年中,由于与石油基聚合物相比,生物基聚合物和树脂具有潜在的低成本和环境影响,其在工业应用中的需求不断增加。目前的研究涉及以环氧化棕榈油产品(EPOP)为原料合成环氧化棕榈油丙烯酸酯(EPOLA),作为环保材料。通过丙烯酸与EPOP的开环反应将其丙烯酸化。在整个反应过程中监测丙烯酸化反应的动力学,反应混合物的酸值在16小时后达到10mg KOH/g,表明丙烯酸已消耗。通过傅里叶变换红外光谱(FTIR)和核磁共振光谱(NMR)对所得环氧丙烯酸酯进行了深入研究,结果表明开环反应成功完成,丙烯酸化产率约为82%。使用两种类型的光引发剂进行EPOLA的紫外光自由基聚合。通过跟踪丙烯酸酯基团的转化率来确定辐射固化行为。除了测量固化的EPOLA薄膜的交联密度和硬度以评估光引发剂对固体薄膜特性的影响外,还评估了其热性能和机械性能。