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Preparation of PPS-Based Nanocomposites and Delamination of Layered Titanate Fillers

机译:基于PPS的纳米复合材料的制备和分层钛酸盐填料的分层

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Organically-modified layered titanates (OMLTs) were used as new layered fillers to prepare poly(p-phenylenesulfide) (PPS)-based nanocomposites. The melt mixing of PPS with any OMLT led to the delamination of stacked titanate layers, regardless of the miscibility between intercalants of OMLTs and PPS, and attained a nanoscale dispersion of titanate layers which is an exfoliation structure in the PPS matrix. Transmission electron microscopy (TEM) analysis and X-ray diffraction (XRD) measurement confirmed that titanate layers were successfully dispersed in the PPS matrix. OMLTs had a specific delamination mechanism, which is governed by melt mixing temperatures. In the melt processing at high temperature, the delamination of stacked-layers in OMLTs was facilitated by retaining an initial interlayer spacing of the layered structure and decreasing the surface charge density of the titanate crystal.
机译:有机改性的层状钛酸酯(OMLT)被用作新的层状填料,以制备基于聚对苯硫醚(PPS)的纳米复合材料。 PPS与任何OMLT的熔融混合导致分层的钛酸酯层分层,而与OMLT的嵌入剂和PPS之间的互溶性无关,并实现了钛酸酯层的纳米级分散,这是PPS基质中的剥落结构。透射电子显微镜(TEM)分析和X射线衍射(XRD)测量证实钛酸酯层已成功分散在PPS基质中。 OMLT具有特定的分层机制,该机制由熔融混合温度控制。在高温下的熔融加工中,通过保留层状结构的初始层间间距并降低钛酸盐晶体的表面电荷密度,可以促进OMLT中堆叠层的分层。

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