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Robust fabrication of thin film polyamide-TiO2 nanocomposite membranes with enhanced thermal stability and anti-biofouling propensity

机译:具有增强的热稳定性和抗生物结垢性的薄膜聚酰胺-TiO2纳米复合膜的鲁棒制造

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摘要

The development of nano-enabled composite materials has led to a paradigm shift in the manufacture of high-performance nanocomposite membranes with enhanced permeation, thermo-mechanical, and antibacterial properties. The major challenges to the successful incorporation of nanoparticles (NPs) to polymer films are the severe aggregation of the NPs and the weak compatibility of NPs with polymers. These two phenomena lead to the formation of non-selective voids at the interface of the polymer and NPs, which adversely affect the separation performance of the membrane. To overcome these challenges, we have developed a new method for the fabrication of robust TFN reverse osmosis membranes. This approach relies on the simultaneous synthesis and surface functionalization of TiO2 NPs in an organic solvent (heptane) via biphasic solvothermal reaction. The resulting stable suspension of the TiO2 NPs in heptane was then utilized in the interfacial (in-situ) polymerization reaction where the NPs were entrapped within the matrix of the polyamide (PA) membrane. TiO2 NPs of 10 nm were effectively incorporated into the thin PA layer and improved the thermal stability and anti-biofouling properties of the resulting TFN membranes. These features make our synthesized membranes potential candidates for applications where the treatment of high-temperature streams containing biomaterials is desirable.
机译:纳米复合材料的发展导致高性能纳米复合膜的制造发生了范式转变,该复合膜具有增强的渗透性,热机械和抗菌性能。成功将纳米颗粒(NP)掺入聚合物薄膜的主要挑战是NP的严重聚集以及NP与聚合物的弱相容性。这两种现象导致在聚合物和NP的界面处形成非选择性的空隙,这会对膜的分离性能产生不利影响。为了克服这些挑战,我们开发了一种用于制造坚固的TFN反渗透膜的新方法。该方法依赖于通过双相溶剂热反应在有机溶剂(庚烷)中同时合成和表面官能化TiO2 NP。然后将所得的TiO2 NPs在庚烷中的稳定悬浮液用于界面(原位)聚合反应中,其中NPs被截留在聚酰胺(PA)膜的基质中。 10 nm的TiO2 NP有效地掺入了PA薄层中,并改善了所得TFN膜的热稳定性和抗生物结垢性。这些特征使我们的合成膜成为潜在的候选材料,可用于需要处理含有生物材料的高温物流的应用。

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