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One-pot synthesis of palm oil-based polyester polyol for production of biodegradable and biocompatible polyurethane

机译:棕榈油基聚酯多元醇的一锅合成生产可生物降解和生物相容性聚氨酯

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摘要

Palm oil-based polyester polyol was synthesized by reacting epoxidized palm olein with malonic acid under a convenient one-pot synthesis method. The optimum reaction time, temperature, and functionality molar ratio were determined. The optimal polyol consisted of hydroxyl and acid values of 98.19 and 1.44mg KOH/g sample, 95% conversion of epoxides and M-n of 5201Da; and the chemical structure was elucidated by Fourier transform infrared , Carbon-13 nuclear magnetic resonance (NMR), and H-1-NMR. The polyol was appeared as light-yellowish liquid with cloud and pour points of 12 and 10 degrees C and reacted with isophorone diisocyanate to produce polyurethane with interconnected pores ranged 35-2165m, porosity ranged 89-90%, tensile strength ranged 59-78kPa, and compression stress ranged 48-55kPa. The polyurethanes showed 120-260% water-uptake and controlled mass loss (1.6-15.3%) after 28days of enzymatic degradation. PU 1 demonstrated slight cytotoxicity with cell proliferation and adhesion observed after 24h incubation, demonstrated its potential as biomaterial for biomedical applications. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46861.
机译:通过在方便的单盆合成方法下通过用丙酸酯与丙酸酯反应,合成棕榈油基聚酯多元醇。确定了最佳反应时间,温度和功能摩尔比。最佳多元醇由98.19和1.44mg KOH / g样品的羟基和酸值组成,环氧化环氧化物和5201DA的M-N转化为95%;通过傅里叶变换红外,碳-13核磁共振(NMR)和H-1-NMR阐明了化学结构。将多元醇作为云和倒点12和10℃的浅黄色液体,并与异佛酮二异氰酸酯反应,以产生聚氨酯,与互连孔隙相互连接,孔隙率范围为89-90%,拉伸强度范围为59-78kpa,压缩压力范围为48-55kpa。在酶促降解28天后,聚氨酯显示出120-260%的吸水和受控质量损失(1.6-15.3%)。 PU 1证明了具有细胞增殖的轻微细胞毒性,24小时孵育后观察到的粘合,证明了其作为生物医学应用的生物材料的潜力。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,46861。

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