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Linear and Nonlinear Optical Processing of Polymer Matrix Nanocomposites

机译:聚合物基纳米复合材料的线性和非线性光学处理

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This work focuses on the scalable synthesis and processing of nanostructures in polymer matrix nanocomposites (PMNCs) for applications that require photochemical functionality of these nanostructures. An in situ vapor deposition process using various metal and metal oxide precursors has been used to create a range of nanocomposites that display photochromic and photocatalytic behaviors. Under specific processing conditions, these composites consist of discrete nanoparticles distributed uniformly throughout the bulk of an optically transparent polymer matrix. Incorporating other chemical species as supplementary deposition agents in the synthesis process can modify these particles and produce complicated nanostructures with enhanced properties. In particular, work has been carried out to structure nanoparticles using laser irradiation. Starting with metallic or metal oxide nanoparticles in the polymer matrix, localized chemical vapor deposition in the near-particle environment has been carried out using laser irradiation to decompose chemical precursors leading to the formation of secondary structures surrounding the seed nanoparticles. Control of the spatial and temporal characteristics of the excitation source allows for synthesis of nanocomposites with a high degree of control over the location, composition and size of nanoparticles in the matrix and presents the opportunity to produce patterned materials with spatially varying properties.
机译:这项工作专注于聚合物基质纳米复合材料(PMNC)中纳米结构的可扩展合成和加工,用于需要这些纳米结构的光化学功能的应用。使用各种金属和金属氧化物前体的原位气相沉积工艺已用于创建一系列显示光致变色和光催化行为的纳米复合材料。在特定的加工条件下,这些复合材料由分散的纳米颗粒组成,这些颗粒均匀地分布在整个光学透明聚合物基质中。在合成过程中掺入其他化学物质作为辅助沉积剂可以修饰这些颗粒并产生具有增强性能的复杂纳米结构。特别地,已经进行了使用激光照射来构造纳米颗粒的工作。从聚合物基质中的金属或金属氧化物纳米颗粒开始,已使用激光辐照在近颗粒环境中进行了局部化学气相沉积,以分解化学前体,从而导致围绕种子纳米颗粒的二级结构形成。激发源的空间和时间特性的控制允许纳米复合材料的合成,对纳米颗粒在基质中的位置,组成和大小具有高度控制,并提供了生产具有空间变化特性的图案化材料的机会。

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