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首页> 外文期刊>Journal of the American Oil Chemists' Society >Synthesis and Characterization of Poly(N-Isopropyl Acryl Amide)-g-Poly(Linoleic Acid)/Poly(Linolenic Acid) Graft Copolymers
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Synthesis and Characterization of Poly(N-Isopropyl Acryl Amide)-g-Poly(Linoleic Acid)/Poly(Linolenic Acid) Graft Copolymers

机译:聚(N-异丙基丙烯酰胺)-g-聚(亚油酸)/聚(亚亚麻酸)接枝共聚物的合成与表征

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摘要

To diversify edible oil thermoresponsive polymer composites, polymeric linoleic acid peroxide (PLina) and polymeric linolenic acid peroxide (PLinl) were obtained by the autoxidation of linoleic acid (Lina) and linolenic acid (Linl), respectively. The autoxidation of Lina and Linl under air at room temperature rendered waxy soluble polymeric peroxide, having a soluble fraction in chloroform of more than 91 wt% and containing up to 1.0 wt% of peroxide. The soluble polymeric oil macro-peroxide was used to initiate the free radical polymerization of N-isopropylacrylamide, NIPAM, resulting in PLina-g-PNIPAM and PLinl-g-PNIPAM graft copolymers, respectively. The PNIPAM content of the graft copolymers was calculated using the elemental nitrogen analysis of graft copolymers. Thermal analysis, FTIR, 1H NMR, and SEM techniques were used in the characterization of the products. The hydrophobic effect of the fatty acid macro peroxides on the thermal response rate of the graft copolymers was investigated by means of swelling-deswelling behaviors in response to temperature change. They have a thermoresponsive character and exhibit a volume phase transition at approximately 27–30 °C, which is 1–4 °C lower than that of pure PNIPAM. A plastizer effect of PLina and PLinl in graft copolymers was observed, indicating a lower glass transition temperature than that of pure PNIPAM.
机译:为了使食用油热响应性聚合物复合材料多样化,分别通过亚油酸(Lina)和亚麻酸(Linl)的自氧化反应获得了聚合亚油酸过氧化物(PLina)和聚合亚油酸过氧化物(PLinl)。室温下在空气中Lina和Linl的自氧化作用产生蜡状可溶的聚合过氧化物,其在氯仿中的可溶部分大于91 wt%,并且含有至多1.0 wt%的过氧化物。可溶性聚合物油过氧化物用于引发N-异丙基丙烯酰胺NIPAM的自由基聚合,分别生成PLina-g-PNIPAM和PLin1-g-PNIPAM接枝共聚物。使用接枝共聚物的元素氮分析计算接枝共聚物的PNIPAM含量。用热分析,FTIR, 1 1 H NMR和SEM技术表征产物。通过响应温度变化的溶胀-脱胀行为,研究了脂肪酸大分子过氧化物对接枝共聚物热响应速率的疏水作用。它们具有热响应特性,在约27–30°C时表现出体积相变,这比纯PNIPAM的相变低1-4°C。在接枝共聚物中观察到PLina和PLinl的增塑剂作用,表明其玻璃化转变温度低于纯PNIPAM。

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