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Solid-state NMR study of modified clays and polymer/clay nanocomposites

机译:改性粘土和聚合物/粘土纳米复合材料的固态NMR研究

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Intercalation of surfactant and polymer chains between the clay platelets gives rise to molecular ordering that changes both the chain conformation and mobility with respect to the bulk phase. As a local probe, nuclear magnetic resonance is particularly suited for such investigations, and this review reports the main results obtained in the solid state. The properties of the modified clays are studied as a function of the surfactant loading, the nature of the head group, and the length of the hydrocarbon chain(s). The structure and charge of the mineral also influence the behaviour of molecules in the gallery space. Among papers on polymer/clay nanocomposites, those dealing with poly(ethylene oxide) have been studied in particular, using a multinuclear approach. Natural clays often contain paramagnetic species such as Fe(III) that perturb the nuclear magnetic resonance (NMR) relaxation processes and can prevent observation of appropriate NMR data. Accordingly, most organic/clay hybrids are studied with hectorite or synthetic smectites. However, the paramagnetic effect has also been found useful in characterizing clay dispersion within the polymer matrix of the nanocomposites.
机译:表面活性剂和聚合物链在粘土薄片之间的插入引起分子顺序,该顺序改变了相对于本体相的链构象和迁移率。作为局部探针,核磁共振特别适合于此类研究,并且该综述报告了固态获得的主要结果。研究了改性粘土的性能与表面活性剂负载量,首基的性质和烃链长度的关系。矿物的结构和电荷也影响画廊空间中分子的行为。在有关聚合物/粘土纳米复合材料的论文中,特别是使用多核方法研究了与聚环氧乙烷有关的论文。天然粘土通常包含诸如Fe(III)之类的顺磁性物质,这些物质扰乱了核磁共振(NMR)弛豫过程,并可能阻止观察适当的NMR数据。因此,大多数的有机/粘土杂化物都被锂蒙脱石或合成蒙脱石研究。然而,还已经发现顺磁效应可用于表征纳米复合材料的聚合物基质内的粘土分散体。

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