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Supercritical Carbon Dioxide Processing Of Nano - Clays And Polymer/clay Nanocomposites

机译:纳米粘土和聚合物/粘土纳米复合材料的超临界二氧化碳加工

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摘要

Effective dispersion of the fillers in a polymer matrix and improvement of polymer-clay interactions are two key challenges in the field of nanocomposites. A novel processing method that utilizes the unique properties of supercritical carbon dioxide (scCO2) to disperse nano-clay and prepare a series of polymer/clay nanocomposites with enhanced properties was explored.Significant dispersion was achieved using the scCO2 process with Cloisite 10A without the presence of an organic phase as evident by the absence of the diffraction peak in WAXD and the presence of individual tactoids that lost their parallel registry. The expanded flexible structure of the scCO2 processed clay exposes more of the available surface area allowing for more contact between the polymer and clay surface, and the platelets should be easier to disperse into a polymer matrix than the u22as receivedu22 clay.Enhanced nano-clay dispersion and improved properties were achieved in the scCO2 processed polystyrene/clay nanocomposites compared to melt compounding and solution blended benchmarks. There was a three-fold reduction in the number of tactoids in the scCO2 samples compared to solution blended benchmark that was independent of the clay modifier used leading to an increase in the surface area available for polymer-clay interactions. Significant dispersion, without strong polymer-clay interactions, was not sufficient for significant nanocomposites property improvement. Also, favorable polymer-clay interaction without clay dispersion was also not enough to obtain the maximum property enhancement. Improvements as high as 3 orders of magnitude in the low frequency storage modulus were observed in nanocomposites processed with 5wt% 10A and 15A scCO2 that had favorable polymer-clay interactions. Supercritical carbon dioxide processed nanocomposite showed a reduction of 45% (5wt% 10A) and 60% (5wt% 15A) in oxygen permeability compared to PS. Moreover, the scCO2 processed nanocomposites reduced the oxygen permeability by 20 to 50% compared to solution blended benchmark samples depending on the clay used. Replacing u22as receivedu22 clay with pre-dispersed clay increased the surface area available for polymer-clay interactions, resulting in a significant doubling of Gu27 at low frequencies over the standard scCO2 processed sample. The scCO2 samples showed solid-like behavior at loadings as low at 2 wt%, and elastic modulus improvements as high as 3.5 orders of magnitude in the 10 wt% nanocomposites over the pure polymer.Comparison of scCO2-processed and water-processed Cloisite Na+ /PVME nanocomposites with u22weak polymer-filler interactionsu22 suggested that high level clay dispersion resulted in non-terminal while intercalation resulted in a filler effect with the relaxation behavior of the bulk polymer virtually unaltered by the presence of the nano-clay. In contrast, for intercalated systems with u22strongeru22 polymer-clay interactions (PVME/I.30P), there was more than two orders of magnitude increase in low-frequency storage moduli. Similarly to what was observed in the PS, in PVME systems, when `strongu27 polymer-clay interactions are present coupled with significant nano-clay dispersion produced significant property improvements.
机译:填料在聚合物基质中的有效分散和聚合物-粘土相互作用的改善是纳米复合材料领域的两个关键挑战。探索了一种利用超临界二氧化碳(scCO2)的独特性能分散纳米粘土并制备一系列具有增强性能的聚合物/粘土纳米复合材料的新颖处理方法。使用scoi2工艺与Cloisite 10A在不存在的情况下实现了显着的分散通过在WAXD中不存在衍射峰和存在失去平行配准的单个触觉触角可以明显看出有机相的存在。经scCO2处理的粘土的膨胀柔性结构暴露了更多的可用表面积,从而使聚合物与粘土表面之间具有更多的接触,并且与接收的粘土相比,血小板应该更易于分散到聚合物基质中。与熔融共混和溶液共混基准相比,在scCO2处理的聚苯乙烯/粘土纳米复合材料中实现了粘土分散和改善的性能。与溶液混合基准相比,scCO2样品中的触针数量减少了三倍,而基准溶液与所用的粘土改性剂无关,从而导致可用于聚合物-粘土相互作用的表面积增加。没有强的聚合物-粘土相互作用的显着分散不足以显着改善纳米复合材料的性能。同样,没有粘土分散的有利的聚合物-粘土相互作用也不足以获得最大的性能增强。在5wt%的10A和15A scCO2处理的纳米复合材料中,观察到的低频存储模量提高了3个数量级,这些复合材料具有良好的聚合物-粘土相互作用。与PS相比,超临界二氧化碳处理的纳米复合材料的透氧性降低了45%(5wt%10A)和60%(5wt%15A)。此外,与溶液混合的基准样品相比,经scCO2处理的纳米复合材料的氧渗透率降低了20%至50%,具体取决于所用的粘土。用预分散的粘土代替原样的粘土会增加可用于聚合物-粘土相互作用的表面积,从而导致低频的G u27在标准scCO2处理的样品上显着翻倍。 scCO2样品在低至2 wt%的负载下表现出类似固体的行为,而10 wt%纳米复合材料的纯弹性聚合物的弹性模量提高了3.5个数量级.scCO2处理和水处理的Cloisite Na +的比较具有弱的聚合物-填料相互作用的/ PVME纳米复合材料表明,高水平的粘土分散导致非末端,而插层则导致填料效应,而本体聚合物的松弛行为几乎不受纳米粘土的存在影响。相比之下,对于具有更高的聚合物-粘土相互作用(PVME / I.30P)的插层系统,低频存储模量增加了两个数量级以上。与在PS中观察到的情况相似,在PVME系统中,当存在“强 u27”聚合物-粘土相互作用以及显着的纳米-粘土分散体时,可以显着改善性能。

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    Manitiu Mihai;

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  • 年度 2010
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