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Adhesion of graphene oxide on a transparent PET substrate: a study focused on the optimization process

机译:氧化石墨烯在透明PET基材上的附着力:专注于优化工艺的研究

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摘要

The procedure with the aim to optimize a process of transfer of GO layer, formed by filtration on a PET substrate, was run out in two stages. First, using a Plackett-Burman experimental design strategy was to investigate the most significant technological parameters. Seven types of different interlayer materials (composed either of polymers or smaller organic molecules) were used to improve the quality of the operation. Using a quantitative structure property relationship strategy, it was stated that the hydrogen bonds play a very important role in the quality assurance of the process of GO transfer. However, hydrogen bonds formed between GO sheets and interlayer molecules influence only in the case when these molecules are sufficiently large. SEM images have shown that the morphology of GO layer after transfer is dependent on the interlayer material. Raman spectra revealed typical changes in the structure of GO layer using different interlayer materials. Arrangement of GO sheets in the layer and the structure of the GO single layer can be controlled by using appropriate interlayer materials. It was found that the main parameters, operating the quality of the process of GO transfer are: the thickness of interlayer, the coating thickness, and the temperature. At the second stage, using a simplex optimization strategy, a specific set of optimal values to obtain the best quality during the transfer procedure, was determined.
机译:该过程旨在优化通过过滤在PET基板上形成的GO层的转移过程,该过程分两个阶段进行。首先,使用Plackett-Burman实验设计策略是研究最重要的技术参数。七种类型的不同夹层材料(由聚合物或较小的有机分子组成)用于改善操作质量。使用定量结构性质关系策略,有人指出氢键在GO转移过程的质量保证中起着非常重要的作用。但是,GO片和层间分子之间形成的氢键仅在这些分子足够大的情况下影响。 SEM图像表明,转移后GO层的形态取决于中间层材料。拉曼光谱揭示了使用不同夹层材料的GO层结构的典型变化。可以通过使用适当的中间层材料来控制该层中GO片材的排列和GO单层的结构。已经发现,GO转移过程的操作质量的主要参数是:中间层的厚度,涂层厚度和温度。在第二阶段,使用单纯形优化策略,确定一组特定的最佳值,以在传输过程中获得最佳质量。

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