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Cleaning and Functionalization of Polymer Surfaces and Nanoscale Carbon Fillers by UV/Ozone Treatment: A Review

机译:紫外线/臭氧处理对聚合物表面和纳米级碳填料的清洁和功能化:综述

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摘要

Dry oxidizing methods have been widely used to modify surface properties of polymer and ceramic substrates. Compared to other dry oxidizing methods, ultraviolet light/ozone (UV/O-3) treatment has hitherto attracted less attention, mainly due to relatively weak oxidizing power. With optimized processing conditions, however, UV/O-3 treatment can be better capable of offering desired effects associated with appropriate surface modifications. Incorporation of nanoscale reinforcements, e. g., carbon nanotubes (CNTs) and graphite, into a polymer matrix creates a new class of composites that possess unique mechanical and functional capabilities. A proper surface treatment is critical to dispersing the reinforcements in the matrix, hence to provide adequate adhesion between the reinforcements and the matrix. In this article, a review is provided on the underlying mechanisms of and the advantages arising from UV/O-3 treatment of polymer substrates and nanoscale carbon materials. Special focus is placed on the relationship between the changes in chemical composition, morphology, functional groups of the treated surface and the corresponding improvements in adhesion and wettability of the substrate, dispersion of nano-reinforcements, as well as the properties of the nanocomposites made therefrom.
机译:干氧化方法已被广泛用于改变聚合物和陶瓷基材的表面性能。与其他干式氧化方法相比,迄今为止,紫外线/臭氧(UV / O-3)处理受到的关注较少,这主要是由于相对较弱的氧化能力所致。但是,通过优化的加工条件,UV / O-3处理可以更好地提供与适当的表面改性相关的所需效果。掺入纳米级增强材料,例如。碳纳米管(CNTs)和石墨等进入聚合物基体,将产生一类具有独特机械和功能能力的新型复合材料。适当的表面处理对于将增强材料分散在基体中至关重要,因此要在增强材料和基体之间提供足够的附着力。在本文中,将对聚合物基材和纳米级碳材料的UV / O-3处理的潜在机理及其​​优势进行综述。特别关注化学成分,形态,处理过的表面的官能团的变化与基材的附着力和润湿性的相应改善,纳米增强材料的分散以及由此制得的纳米复合材料的性能之间的关系。 。

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