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Improving the Protective Properties of Shellac-Based Varnishes by Functionalized Nanoparticles

机译:通过官能化纳米颗粒改善基于磷酸的清漆的保护性能

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摘要

Shellac is a natural varnish still known as one of the most elegant finishes for furniture and musical instruments, and currently used for restoration and refinishing of wooden antiques. However, it displays some limitations such as (i) sensitivity to alcoholic solvents (ii) softness of the coating, and (iii) considerable weathering due to photo- and bio-degradation. Hence, the main aim of this study was to improve the properties of shellac-based finish by introducing functionalized nanoparticles. Two inorganic nano-sized materials were considered: ZnO that was expected to reduce photo- and bio-degradation problems, and ZrO2 that was expected to improve the hardness of the varnish. Nanoparticles were synthesized and treated with a bifunctional silane coupling agent. Both plain and functionalized nanoparticles were extensively characterized using different experimental techniques. Functionalized nanoparticles were grafted on shellac through a reaction involving the epoxy-rings introduced on their surface. The resulting modified varnishes were applied on maple wood specimens according to traditional procedures. Different instrumental techniques and testing methods were used to characterize both nano-sized materials and the corresponding nanocomposites, as well as to evaluate the performance of the new coatings. The investigated composite materials display the same aesthetic appearance as plain shellac, while some other properties were improved. In particular, both nanocomposites are distinctly less soluble in alcohols than plain shellac and display antifungal properties. Moreover, coating containing functionalized ZnO nanoparticles displays photo-protection behavior, while shellac modified with ZrO2 nanoparticles exhibits a higher hardness when compared to the traditional varnish.
机译:贝拉克是一种天然清漆,仍然被称为家具和乐器最优雅的饰面之一,目前用于恢复和修补木质古董。然而,它显示出一些限制,例如(i)对涂层的含酒精溶剂(ii)柔软度的敏感性,并且(iii)由于光照和生物降解导致的大众化风化。因此,本研究的主要目的是通过引入官能化纳米颗粒来改善基于磷酸基的表面的性能。考虑了两种无机纳米大小的材料:预期降低光谱和生物降解问题的ZnO,ZrO2预期可提高清漆的硬度。合成纳米颗粒并用双官能硅烷偶联剂处理。使用不同的实验技术广泛表征平均和官能化的纳米颗粒。通过涉及在其表面上引入的环氧环的反应接枝官能化纳米颗粒。根据传统程序,在枫木标本上施加得到的改性清漆。使用不同的仪器技术和测试方法来表征纳米尺寸材料和相应的纳米复合材料,以及评估新涂层的性能。调查的复合材料显示出与普通虫胶相同的审美外观,而其他一些性质得到改善。特别地,两种纳米复合材料明显不如普通虫胶和显示抗真菌性能的溶于醇。此外,含有官能化ZnO纳米颗粒的涂层显示光保护行为,而用ZrO2纳米颗粒改性的虫胶酸盐与传统清漆相比,用ZrO2纳米粒子的改性表现出更高的硬度。

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