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In Situ Surface Modification of Paper-Based Relics with Atmospheric Pressure Plasma Treatment for Preservation Purposes

机译:大气压等离子体处理纸质文物的原位表面修饰以用于保存

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摘要

Paper-based relics, which are an important part of cultural heritage worldwide, are at risk of imminent damage from various environmental sources. To protect them, the atmospheric pressure plasma polymerization of hexamethyldisiloxane (HMDSO) precursor has been explored on paper-based relics in situ. The macro and micro images taken during this process suggest that the in situ plasma treatment does not change the macro morphology and the micro structure of the treated paper-based relic samples. On the other hand, plasma treatment causes the polymerization of the HMDSO which then produces nanoparticles deposited onto the paper-based relics. These nanoparticles provide good waterproof properties with large static water contact angles and smaller rolling angles, which protect the paper-based relics from water penetration. Moreover, since the nanoparticles are deposited onto the fibers, waterproof fastness is ensured. Also, the examined mechanical properties of the treated and untreated paper-based relics indicate that the atmospheric pressure plasma treatment does not affect the strength of the paper very much. The results in this study show that atmospheric pressure plasma treatment with the use of HMDSO precursor is a good method to preserve paper-based relics.
机译:纸质文物是全球文化遗产的重要组成部分,面临着各种环境资源即将造成破坏的危险。为了保护它们,六甲基二硅氧烷(HMDSO)前体的大气压等离子体聚合已在原纸基纸上进行了探索。在此过程中拍摄的宏观和微观图像表明,原位等离子体处理不会改变处理后的纸质遗物样品的宏观形态和微观结构。另一方面,等离子体处理导致HMDSO聚合,然后产生沉积在纸质遗物上的纳米颗粒。这些纳米粒子具有良好的防水性能,且具有较大的静态水接触角和较小的滚动角,可保护纸质文物免受水渗透。此外,由于纳米颗粒沉积在纤维上,因此确保了防水牢度。同样,对处理过的和未处理过的纸基遗物的机械性能的检查表明,大气压等离子体处理对纸张的强度影响不大。这项研究的结果表明,使用HMDSO前驱体进行大气压等离子体处理是保存纸质遗物的好方法。

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