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Diffusion-controlled alteration of inhomogeneous materials: tailoring of the spatial distribution of nanoparticles in nanocomposites

机译:非均质材料的扩散控制改变:纳米复合材料中纳米颗粒的空间分布的定制

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摘要

Gaining control over the spatial distribution of nanoparticles in composite polymer materials is a relevant goal for a range of nanotechnology applications. Promising methods to produce nanoparticles directly in the polymer matrix rely on their self-assembly from the atoms that are generated due to the photodestruction of the precursor additive. Such materials are known as photoinduced nanocomposites. In this work, we theoretically study the possibility of producing tailored nanoparticle distributions in such materials by the local modification of their physical properties. For instance, laser irradiation may cause a permanent free-volume expansion (laser swelling), which results in a substantial change in the diffusivity of the aggregating atoms. The modeling shows that the nanoparticles tend to accumulate in the domains where the diffusivity is greater. Additionally, the variation of the matrix properties may result in spatial modulation of the atom-matrix interaction energy and thus modulation of the atom solubility in the matrix. This phenomenon can also affect the NP spatial distribution. This paper formulates the problem of the precipitation phase transition from the supersaturated solution in a polymer solvent which is ''frozen'' in the spatially nonuniform state. The basic traits of this phenomenon are studied by means of an analytical model. Then the NP growth is simulated using a lattice model.
机译:对复合聚合物材料中纳米颗粒的空间分布进行控制是一系列纳米技术应用的相关目标。直接在聚合物基质中生产纳米颗粒的有前途的方法依赖于它们由于前体添加剂的光解而产生的原子的自组装。这样的材料被称为光致纳米复合材料。在这项工作中,我们从理论上研究了通过对材料的物理性质进行局部修改来在这些材料中生成量身定制的纳米颗粒分布的可能性。例如,激光照射可能会导致永久性的自由体积膨胀(激光膨胀),从而导致聚集原子的扩散率发生重大变化。建模表明,纳米粒子倾向于在扩散率较大的区域中积聚。另外,基体性质的变化可以导致原子-基体相互作用能的空间调制,从而导致原子在基体中的溶解度的调制。这种现象也会影响NP的空间分布。本文提出了从过饱和溶液在空间不均匀状态下被“冻结”的聚合物溶剂中过饱和溶液中沉淀相转变的问题。通过分析模型研究了该现象的基本特征。然后使用晶格模型模拟NP的增长。

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