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首页> 外文期刊>International Journal of Nanotechnology >In situ preparation of nanocomposites by surface treatment of titanium dioxide particles with a layered double hydroxide
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In situ preparation of nanocomposites by surface treatment of titanium dioxide particles with a layered double hydroxide

机译:用层状双氢氧化物表面处理二氧化钛颗粒原位制备纳米复合材料

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摘要

It is difficult to incorporate nanoparticles in a matrix because the huge number of particles and their enormous surface area dictate that one must expend large amounts of energy in dispersing them and one must find ways to maintain their separation because their surface chemistry is often sufficiently different from the matrix that flocculation via phase separation must be overcome. In many technologies, titanium dioxide is a common white pigment. There is commonly a surface treatment on titanium dioxide particles of a mixed aluminium hydroxide which is partially soluble and is thus available to participate in the formation of a layered double hydroxide, LDH. Thus an in situ preparation of a nanocomposite comprising an LDH and a polymer would take advantage of the presence of the pigment and provide potentially useful gains in physical properties. A zinc - aluminium LDH was precipitated on TiO_2 particles. X-Ray diffraction confirmed the structure of the LDH and one could detect the change in surface chemistry of the TiO_2 particles by examining their zeta potential in an aqueous dispersion. These materials were incorporated into simple polymeric coating films using polyethylene oxide where the LDH treated particles improved the mechanical properties of the polymer and changed the polymer crystallinity and its glass transition behaviour.
机译:很难将纳米颗粒掺入基质中,因为大量的颗粒及其巨大的表面积表明,在分散它们时必须消耗大量的能量,并且由于其表面化学成分通常与表面化学性质通常存在很大差异,因此必须找到一种方法来保持它们的分离必须克服通过相分离絮凝的基质。在许多技术中,二氧化钛是一种常见的白色颜料。通常在混合氢氧化铝的二氧化钛颗粒上进行表面处理,该表面处理氢是部分可溶的,因此可用于形成层状双氢氧化物LDH。因此,包含LDH和聚合物的纳米复合材料的原位制备将利用颜料的存在并在物理性质上提供潜在有用的收益。锌铝LDH沉淀在TiO_2颗粒上。 X射线衍射证实了LDH的结构,并且可以通过检查其在水分散体中的ζ电位来检测TiO_2颗粒的表面化学变化。将这些材料掺入使用聚环氧乙烷的简单聚合物涂膜中,其中经LDH处理的颗粒改善了聚合物的机械性能,并改变了聚合物的结晶度及其玻璃化转变性能。

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