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Development of an Immiscible Polymer/Polymer/Nanoparticle System in Order to Study the Location of Nanoparticles at Polymer/Polymer Interface by Quantitative Optical Microscopy

机译:一种不混溶的聚合物/聚合物/纳米粒子系统的研制,以通过定量光学显微镜研究聚合物/聚合物界面处的纳米颗粒的位置

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In the past ten years, stabilization of the phase morphology of immiscible polymer blends during melt compounding went through a new perspective by the use of inorganic nanoparticles as compatibilizers. Following the ideas of Ramsden and Pickering, the stabilization of the minor phase in immiscible polymer blends could be achieved with solid nanoparticles located at the interface of the phases, lowering the interfacial tension and acting as a physical barrier to droplet coalescence. In this work, the location of the silica nanoparticle in an immiscible polymer blend is studied using quantitative optical microscopy, measuring the total light scattering, i.e. turbidity, created by the use of hydrophilic and hydrophobic silica nanoparticles (hl-silica and hb-silica, respectively) in an immiscible polymer blend. The light scattering at the polymer/polymer interface is minimized choosing a PS/PC immiscible blend which has minimal difference in their refractive indices. On the other hand, the considerable difference in the refractive index of the chosen polymers and nanosilica would highlight the scattering effect of the silica nanoparticles if located at the polymer/polymer interface. The transmitted light intensity from neat PS/PC blends and some PS/PC/hl-silica systems were similar, showing only a small change in the range of the glass transition temperatures of the two polymers, which is an indication that the silica nanoparticles are dispersed inside the two polymer phases. However, the transmitted light intensity is greatly changed in the system PS/PC/hb-silica, containing the hydrophobic silica, which according to the wetting parameter should have the silica nanoparticles located mainly at the polymer/polymer interface.
机译:在过去的十年中,熔融混配过程中不混溶共混聚合物的相形态的稳定化通过使用无机纳米粒子作为增容剂的一个新的视角去。以下冉斯登和皮克林的思想,在不混溶的聚合物共混物的次要相的稳定化可能会与位于相的界面固体纳米颗粒来实现,降低界面张力并用作物理屏障液滴聚结。在这项工作中,二氧化硅纳米粒子的不混溶聚合物共混物的位置使用定量的光学显微镜观察,测量总的光散射,即浊度,通过使用亲水性和疏水性二氧化硅纳米粒子(HL-二氧化硅和HB-二氧化硅的创建,分别地)以不混溶的聚合物共混物。在聚合物/聚合物界面处的光散射被最小化选择PS / PC混溶的共混物,其具有在它们的折射率的差异很小。在另一方面,在所选择的聚合物和纳米二氧化硅的折射率的相当大的差异将突出如果位于聚合物/聚合物界面处的二氧化硅纳米粒子的散射效果。从纯的PS / PC共混物和一些PS / PC /百升 - 二氧化硅系统的透射光强度是类似的,仅示出在两种聚合物的玻璃化转变温度的范围内,这是一个指示,二氧化硅纳米粒子为一个小的变化分散在两种聚合物相的内部。然而,透射光强度在系统PS / PC / HB-二氧化硅很大变化,含有疏水性二氧化硅,其根据所述润湿参数应具有位于主要在聚合物/聚合物界面处的二氧化硅纳米粒子。

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