首页> 外文期刊>Journal of Materials Science >FTIR spectral characterization of thin film coatings of oleic acid on glasses Part II Coatings on glass from different media such as water, alcohol, benzene and air
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FTIR spectral characterization of thin film coatings of oleic acid on glasses Part II Coatings on glass from different media such as water, alcohol, benzene and air

机译:玻璃上的油酸薄膜涂层的FTIR光谱表征第二部分来自不同介质(例如水,酒精,苯和空气)的玻璃涂层

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摘要

Oleic acid thin film was coated on soda-lime-silicate (SLS) glass from different coating media such as benzene, ethyl alcohol, water and air with different coating times and concentrations. When the coating medium is benzene, relatively more COO-metal ion complexes formed on the substrate surface, resulting in a coating layer with a more rigid and ordered structure. This was caused by a high solubility of oleic acid and a lower metal dissolution rate of the glass substrate in the medium. The coating time was a less important factor on the ordering of molecular chains than the coating medium was. The effect of concentration was more significant when oleic acid is coated from ethyl alcohol or water rather than from benzene. When oleic acid is coated from benzene, the most highly-ordered molecular structure of coating layer was obtained even at lower concentration. This investigation reveals that the dissolution behavior of the substrate, the solubility of the coating material and the dissociation behavior of metal-carboxylate (COO-M) complexes significantly influence the interaction mechanism between the coating material and the substrate. These factors can be controlled by the selection of an appropriate coating medium; thus, we can design organic thin films with optimized properties.
机译:油酸薄膜从苯,乙醇,水和空气等不同的涂覆介质以不同的涂覆时间和浓度涂覆在钠钙硅酸盐(SLS)玻璃上。当涂布介质为苯时,在基材表面上形成相对更多的COO-金属离子络合物,从而形成具有更刚性和有序结构的涂层。这是由于油酸的高溶解度和玻璃基板在介质中的较低的金属溶解速率所致。与包衣介质相比,包衣时间对分子链的排序影响较小。当用乙醇或水而不是苯涂覆油酸时,浓缩的影响更为显着。当从苯上涂覆油酸时,即使在较低的浓度下,也可以获得涂层的最高序的分子结构。该研究表明,基材的溶解行为,涂料的溶解性和金属羧酸盐(COO-M)配合物的解离行为显着影响涂料与基材之间的相互作用机理。这些因素可以通过选择合适的涂层介质来控制。因此,我们可以设计具有最佳性能的有机薄膜。

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