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Cobalt hydroxide colloidal particles precipitation on nanoclay layers for the formation of novel nanocomposites of carbon nanotubes/nanoclay

机译:纳米粘土层上的氢氧化钴胶体颗粒沉淀,用于形成碳纳米管/纳米粘土的新型纳米复合材料

摘要

Here we demonstrated the formation of Co(OH)2 colloidal particles on the surface of nanoclay layers with pH-controlled ion precipitation. The brucite-like phase of Co(OH)2 colloidal particles obtained exhibited a tendency for irregular growth with increasing pH. The precipitation of Co(OH)2 colloidal particles on the nanoclay surface led to the formation of a weakly ordered layered structure in the nanoclay as evidenced by the change of (0 0 1) reflections in the nanoclay structure. Two processes, physical adsorption and chemical adsorption, should be involved in the precipitation of Co(OH)2 particles on the nanoclay surface. The catalysis of the produced Co(OH)2-nanoclay hybrid was proved by the growth of CNTs with chemical vapor deposition. Under the pH value of 9.5, the resulting CNTs created a network-like structure connecting the nanoclay flakes while the nanoclay structure displayed signs of degradation after the growth of CNTs within its interlayer space. The novel CNTs-nanoclay composite structure holds high potentials for application as advanced polymer reinforcements.
机译:在这里,我们证明了在pH控制的离子沉淀下,纳米粘土层表面上Co(OH)2胶体颗粒的形成。所获得的Co(OH)2胶体颗粒的水镁石状相表现出随pH增加不规则生长的趋势。 Co(OH)2胶体颗粒在纳米粘土表面上的沉淀导致纳米粘土中形成弱有序的层状结构,如纳米粘土结构中(0 0 1)反射的变化所证明。 Co(OH)2颗粒在纳米粘土表面的沉淀应涉及物理吸附和化学吸附两个过程。通过化学气相沉积法生长碳纳米管证明了所产生的Co(OH)2-纳米粘土杂化体的催化作用。在9.5的pH值下,所得的CNT形成了连接纳米粘土薄片的网络状结构,而纳米粘土结构在其层间空间中生长后显示出降解的迹象。新型的CNTs-纳米粘土复合结构具有作为高级聚合物增强材料应用的巨大潜力。

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