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Influence of multiwall carbon nanotubes trapped at the interface of an immiscible polymer blend on interfacial tension

机译:在不混溶的聚合物共混物的界面处捕获的多壁碳纳米管对界面张力的影响

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The influence on interfacial energy of multiwall unfunctionalized carbon nanotubes (CNTs) trapped at the interface of an immiscible blend of polyamide 12 (PA12) and acrylate-ethylene (EA) copolymer is investigated with the help of the Palierne model combined with transmission electron microscopy (TEM) observations. It is found that the interfacial energy is unaffected by the interfacially trapped CNTs. The reduced droplet size observed in the presence of CNTs can neither be ascribed to a classical compatibilizer effect due to lower interfacial energy leading to enhanced breakup during processing, nor to the minute changes of the continuous phase viscosity induced by the CNTs. Another explanation based on steric hindrance is proposed. A network CNT layer that acts as a rigid shell is formed, which prevents coalescence of colliding droplets. The influence on interfacial tension of carbon nanotubes (CNTs) trapped at the interface of an immiscible blend of polyamide 12 and acrylate-ethylene copolymer is investigated. It is found that the interfacial energy is unaffected by the interfacially trapped CNTs. The high concentration of interfacially trapped CNTs presumably forms a network layer and acts as a rigid shell, which prevents coalescence of colliding droplets
机译:借助Palierne模型结合透射电子显微镜,研究了聚酰胺12(PA12)与丙烯酸酯-乙烯(EA)共聚物的不混溶共混物界面处捕获的多壁未官能化碳纳米管(CNT)对界面能的影响( TEM)观察。发现界面能不受界面捕获的CNT的影响。在CNT存在下观察到的液滴尺寸减小既不能归因于经典的增容剂作用,这是由于较低的界面能导致加工过程中的破裂增加,也不能归因于CNT引起的连续相粘度的微小变化。提出了基于位阻的另一种解释。形成用作刚性壳的网络CNT层,可防止碰撞液滴的聚结。研究了在聚酰胺12与丙烯酸酯-乙烯共聚物的不混溶共混物的界面处截留的碳纳米管(CNT)对界面张力的影响。发现界面能不受界面捕获的CNT的影响。高浓度的界面捕获的CNT可能会形成网络层并充当刚性外壳,从而防止碰撞液滴的聚结

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