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Preparation and infrared emissivity study of collagen-g-PMMA/In_2O_3 nanocomposite

机译:胶原-g-PMMA / In_2O_3纳米复合材料的制备及红外发射率研究

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Collagen-g-PMMA copolymer and indium oxide nanoparticles were prepared by grafting copolymerization of methyl methacrylate onto collagen and sol-gel process separately, and collagen-g-PMMA/indium oxide nanocomposite was prepared by ultrasonic wave irradiation. Simultaneously two collagen/indium oxide nanocomposites were prepared by liquid-liquid dispersion and ultrasonic wave irradiation respectively in the interest of infrared emissivity investigation (8-14 (mu)m). Three nanocomposites were characterized by SEM, TEM, IR spectroscopy, thermogravimetric analysis and infrared emissometer. SEM and TEM indicated that three nanocomposites were of different microstructures, and that collagen-g-PMMA copolymer and indium oxide nanoparticles self-assembled into homogeneously spherical aggregates of 600 nm in diameter; which is owing to, we proposed, the high activity of amphiphilic collagen-g-PMMA copolymer nanoparticles. It was found that two nanocomposites showed significantly lower infrared emissivity value than their components, but the rest one did not. Decrease mechanism of infrared emissivity value of nanocomposite was discussed based on microstructure. It was assumed that the decrease in infrared emissivity value of collagen-g-PMMA/indium oxide nanocomposite was attributed to strong interfacial interactions between collagen-g-PMMA and indium oxide.
机译:分别将甲基丙烯酸甲酯的共聚接枝到胶原上和溶胶-凝胶法制得胶原-g-PMMA共聚物和氧化铟纳米粒子,并通过超声波辐照制备胶原-g-PMMA /氧化铟纳米复合材料。为了进行红外发射率研究(8-14μm),分别通过液-液分散和超声波辐射同时制备了两种胶原/氧化铟纳米复合材料。通过SEM,TEM,IR光谱,热重分析和红外发射仪对三种纳米复合材料进行了表征。 SEM和TEM表明三种纳米复合材料具有不同的微观结构,胶原-g-PMMA共聚物和氧化铟纳米粒子自组装成直径为600nm的均匀球形聚集体。这是由于我们提出了两亲性胶原-g-PMMA共聚物纳米粒子的高活性。发现两种纳米复合材料的红外发射率值明显低于其组分,而另一种则没有。基于微观结构,探讨了纳米复合材料红外发射率降低的机理。假定胶原-g-PMMA /氧化铟纳米复合材料的红外发射率值的降低归因于胶原-g-PMMA与氧化铟之间的强界面相互作用。

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