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Supercritical CO2 as an efficient medium for layered silicate organomodification: preparation of thermally stable organoclays and dispersion in polyamide 6

机译:超临界CO 2作为层状硅酸盐有机改性的有效介质:制备热稳定的有机粘土并分散在聚酰胺中6

摘要

In this study, the preparation of organoclays via a new process using supercritical carbon dioxide is described. This method turns out to be very efficient with various surfactants, in particular nonwater-soluble alkylphosphonium salts. The influence of the surfactant as well as of the clay nature on the thermal stability of the organoclay is evaluated by thermogravimetric analysis. Phosphonium-based montmorillonites are up to 90 °C more stable than ammonium-based montmorillonites. Moreover, the use of hectorite adds another 40 °C of thermal stability to the phosphonium-modified clays. These organomodified clays have been melt-blended with polyamide 6 and morphology as well as fire properties of the nanocomposites are discussed, in terms of influence of the stability of organoclays. For the first time, comparison of nanocomposites based on clay organomodified by ammonium and phosphonium salts of the very same structure is reported.
机译:在这项研究中,描述了使用超临界二氧化碳通过新工艺制备有机粘土的方法。结果证明该方法对于各种表面活性剂特别是非水溶性烷基phosph盐是非常有效的。通过热重分析评估了表面活性剂以及粘土性质对有机粘土热稳定性的影响。磷基蒙脱石比铵基蒙脱石稳定高达90°C。此外,锂蒙脱石的使用为the改性粘土增加了40°C的热稳定性。这些有机改性的粘土已经与聚酰胺6熔融共混,并且就有机粘土的稳定性的影响,讨论了纳米复合材料的形貌以及着火性能。首次报道了基于具有相同结构的铵盐和phospho盐有机改性的粘土的纳米复合材料的比较。

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