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Thermal and electrical properties of acrylic acid grafted onto starch by ceric ammonium nitrate and potassium permanganate initiator

机译:硝酸铈铵和高锰酸钾引发剂接枝淀粉的丙烯酸的热电性能

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摘要

Graft copolymerization of acrylic acid (AA) onto corn starch (Starch) in aqueous media via a redox initiator system of ceric ammonium nitrate and potassium permanganate has been studied gravimetrically under nitrogen atmosphere. The grade of graft copolymers were synthesized under the effect of reaction variables such as redox initiator concentration, monomer concentration, reaction temperature and polymerization time on the grafting were studied in terms of percent grafting ratio (% G) and percent grafting efficiency (% E). The graft copolymers obtained were characterized by fourier transform infrared (FTIR), scanning electron microscope (SEM), and thermogravimetry analysis (TGA). SEM morphology shows that the surface of the grafted starch is highly rough in comparison with ungrafted starch which is attributed to the high graft density. The starch surface was dispersed heterogeneously among the polyacrylic matrix and rugged surface was observed that all fragments of these surfaces are rough, spherical, rod in shape. The FTIR shows characterized peak in the region 1722.28 cm~(-1) which attributed to the shift in the position of C=O group deriving grafting of AA with starch. TGA shows the graft copolymer degrades at higher temperature and electrical conductivity indicates conductivities lies between 10~(-7) and 10~(-5) S/cm.
机译:在氮气氛下通过重量法研究了硝酸铈和高锰酸钾的氧化还原引发剂体系,在水性介质中丙烯酸(AA)与玉米淀粉(淀粉)上的接枝共聚。在反应变量如氧化还原引发剂浓度,单体浓度,反应温度和聚合时间对接枝反应的影响下,合成了接枝共聚物的等级,以百分比接枝率(%G)和百分比接枝率(%E)为研究对象。 。通过傅立叶变换红外(FTIR),扫描电子显微镜(SEM)和热重分析(TGA)对获得的接枝共聚物进行表征。 SEM形态学表明,与未接枝淀粉相比,接枝淀粉的表面非常粗糙,这归因于高接枝密度。淀粉表面不均匀地分散在聚丙烯酸酯基体中,观察到凹凸不平的表面,这些表面的所有碎片均为粗糙,球形,棒状。 FTIR显示出在1722.28cm-1处的特征峰,这归因于C = O基团的位置的变化,这是由于淀粉接枝了AA。 TGA表明接枝共聚物在较高温度下降解,电导率表明电导率在10〜(-7)和10〜(-5)S / cm之间。

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