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Reflections on the material science of clay minerals

机译:对粘土矿物材料科学的思考

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Possible new applications of clay minerals are explored continuously. Three such areas are clay-polymer nanocomposites, clay mineral films and clay mineral catalysts. Advances in these areas must come from the increase of fundamental knowledge of the clay minerals, especially the expanding clay minerals or smectites. Examples of fundamental research areas are: the mechanical properties of single clay layers and the change of these mechanical properties with the number of layers in a clay mineral particle; control of the organization of clay mineral layers and of molecules in the interlayer space for the production of functional films; and the distribution,of pillars and of metal nanoparticles in the interlayer space for application as catalysts. Natural clay minerals suffer from several disadvantages, such as the presence of impurities and inhomogeneities in sizes and shapes of particles and in charge distribution. Synthesis of clay minerals with well-defined sizes and shapes of the particles and with homogeneous charge distribution is imperative to obtain significant advancement of knowledge. (C) 2015 Elsevier B.V. All rights reserved.
机译:不断探索粘土矿物可能的新应用。三个这样的领域是粘土-聚合物纳米复合材料,粘土矿物膜和粘土矿物催化剂。这些领域的进步必须来自对粘土矿物特别是膨胀的粘土矿物或蒙脱石的基础知识的增加。基础研究领域的例子包括:单个粘土层的机械性能以及这些机械性能随粘土矿物颗粒中层数的变化而变化;控制粘土矿物层的组织和层间空间中的分子以生产功能性薄膜;以及层间空间中的支柱和金属纳米粒子的分布,以用作催化剂。天然粘土矿物具有几个缺点,例如存在杂质以及颗粒的尺寸和形状以及电荷分布不均匀。必须获得具有明确定义的颗粒尺寸和形状,电荷分布均匀的粘土矿物。 (C)2015 Elsevier B.V.保留所有权利。

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