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Heterogenized Imidazolium-Based Ionic Liquids in Pebax®Rnew. Thermal Gas Transport and Antimicrobial Properties

机译:Pebax®Rnew中的异质咪唑基离子液体。热气体传输和抗菌特性

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摘要

Imidazolium-based ionic liquids (ILs) have interesting antimicrobial activity and their inclusion in a flexible film is ideal to take advantage of their properties in practical applications. Poly(ether-block-amide) (Pebax Rnew) films were prepared by solution casting, loading two synthetized ILs (1-hexadecyl-3-methylimidazolium dimethyl-5-sulfoisophthalate [Hdmim][DMSIP], IL1 and 1-octyloximethyl-3-methylimidazolium hexafluorophosphate [OOMmim][PF ], IL2) up to 5 wt.%. The ILs were characterized by H NMR and MALDI-TOF spectroscopy. The films were investigated for miscibility, morphology, wettability, spectral properties and gas transport. The films display a good thermal stability (>200 °C). Differential scanning calorimetry (DSC) proves phase separation in the blends, that is consistent with FTIR analysis and with the island-like surface morphology observed in the micrographs. Gas permeability tests revealed that the IL-loaded films are dense and poreless, keeping the selectivity of the polymer matrix with a somewhat lessened permeability owing to the impermeable ILs crystals. The film antimicrobial activity, evaluated against Gram-negative and Gram-positive bacterial strains, was correlated to the structure of the incorporated ILs. The smaller IL2 salt did not modify the hydrophobic nature of the neat polymer and was readily released from the films. Instead, IL1, having a longer alkyl chain in the cation, provided a promising antimicrobial activity with a good combination of hydrophilicity, permeability and thermal stability.
机译:基于咪唑鎓的离子液体(ILs)具有令人感兴趣的抗菌活性,将它们包含在柔性薄膜中是在实际应用中充分利用其性能的理想选择。通过溶液流延制备聚(醚嵌段酰胺)(Pebax Rnew)薄膜,加载两个合成的IL(1-十六烷基-3-甲基咪唑鎓-5-磺基间苯二甲酸二甲酯[Hdmim] [DMSIP],IL1和1-辛基氧甲基-3) -甲基六氟磷酸咪唑鎓[OOMmim] [PF],IL2)达到5 wt。%。通过1 H NMR和MALDI-TOF光谱对IL进行表征。研究了膜的可混溶性,形态,润湿性,光谱特性和气体传输。薄膜显示出良好的热稳定性(> 200°C)。差示扫描量热法(DSC)证明了共混物中的相分离,这与FTIR分析和显微照片中观察到的岛状表面形态一致。气体渗透性测试表明,负载有IL的薄膜致密且无孔,由于不渗透的ILs晶体,聚合物基质的选择性保持了较低的渗透性。针对革兰氏阴性和革兰氏阳性细菌菌株评估的薄膜抗菌活性与掺入的白介素的结构相关。较小的IL2盐不会改变纯聚合物的疏水性,并且很容易从薄膜中释放出来。相反,在阳离子中具有更长烷基链的IL1提供了有希望的抗菌活性,并具有亲水性,渗透性和热稳定性的良好组合。

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