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首页> 外文期刊>Macromolecular Research >Nanocomposite Membranes Consisting of Poly(vinyl chloride) Graft Copolymer and Surface-Modified Silica Nanoparticles
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Nanocomposite Membranes Consisting of Poly(vinyl chloride) Graft Copolymer and Surface-Modified Silica Nanoparticles

机译:聚氯乙烯接枝共聚物和表面改性二氧化硅纳米粒子组成的纳米复合膜

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A graft copolymer of poly(vinyl chloride)-graft-poly(oxyethylene methacrylate) (PVC-g-POEM) was synthesized via atom transfer radical polymerization (ATRP), and fumed silica (SiO2) nanoparticles were modified by grafting POEM via a three-step synthetic approach. The resultant graft copolymer and modified SiO2 nanoparticles were solution blended to prepare PVC-g-POEM/SiO2-POEM nanocomposite membranes. Uniform distribution of SiO2-POEM nanoparticles in the membranes and microphase-separated morphology were confirmed by transmission electron microscopy (TEM) and differential scanning calorimetry (DSC). X-ray diffraction (XRD) analysis revealed increased randomness in the amorphous phase of PVC-g-POEM and continuous decrease in the interchain d-spacing with increased SiO2-POEM content, indicating a more closely packed nanocomposite membrane structure. The mechanical properties of PVC-g-POEM/SiO2-POEM membranes were superior to those of PVC-g-POEM, resulting from strong interfacial interactions in the membranes due to the segregation and entanglement of the POEM chains. In addition, the permeation performances of the PVC-g-POEM/SiO2-POEM nanocomposite membranes were somewhat better than those of PVC-g-POEM, which showed excellent CO2/N2 and CO2/H2 separation capabilities. For example, the CO2 permeability and CO2/N2 selectivity of PVC-g-POEM/SiO2-POEM (2%) at 35 °C were 200 Barrer and 43, respectively. Thus, we successfully prepared membranes that deliver high permeation properties, as well as good mechanical properties.
机译:通过原子转移自由基聚合(ATRP)合成了聚(氯乙烯)-接枝-聚(甲基丙烯酸氧乙烯酯)(PVC-g-POEM)的接枝共聚物,并通过三步接枝POEM改性了气相二氧化硅(SiO2)纳米颗粒。分步合成方法。将所得的接枝共聚物和改性的SiO2纳米颗粒进行溶液共混以制备PVC-g-POEM / SiO2-POEM纳米复合膜。通过透射电子显微镜(TEM)和差示扫描量热法(DSC)证实了SiO2-POEM纳米颗粒在膜中的均匀分布和微相分离的形态。 X射线衍射(XRD)分析显示,PVC-g-POEM的无定形相中的随机性增加,并且随着SiO2-POEM含量的增加,链间d-间距的连续减小,表明纳米复合膜结构更紧密。 PVC-g-POEM / SiO2-POEM膜的机械性能优于PVC-g-POEM膜,这是由于POEM链的分离和缠结导致膜中的强烈界面相互作用所致。此外,PVC-g-POEM / SiO2-POEM纳米复合膜的渗透性能比PVC-g-POEM的渗透性能稍好,后者具有出色的CO2 / N2和CO2 / H2分离能力。例如,PVC-g-POEM / SiO2-POEM(2%)在35°C时的CO2渗透率和CO2 / N2选择性分别为200 Barrer和43。因此,我们成功地制备了具有高渗透性能以及良好机械性能的膜。

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