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Improving the Protectiveness of 3-Mercaptopropyl-Trimethoxysilane Coatings on Bronze by Addition of Oxidic Nano- and Microparticles

机译:通过加入氧化纳米和微粒改善三巯基丙基三甲氧基硅烷涂层的保护性

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The protectiveness of coatings based on 3-mercaptopropyl-trimethoxysilane (PropS-SH) applied on bronze artworks was enhanced by investigating and tuning a variety of factors. In particular, the coating performances were optimized by proper additive choice among oxide nanoparticles (CeO2, La2O3, TiO2) and microparticles (fly ash (FA)), and by varying the aging time of the nanoparticle suspensions before coating application and the RT curing time of the coatings. Moreover, the possibility of conservation of the silane solution under refrigerated conditions was assessed. The aggressive environment was a tenfold concentrated synthetic acid rain (AR × 10). The techniques adopted comprised electrochemical tests (polarization curve recording and EIS tests) and SEM-Energy Dispersion Spectroscopy (EDS) observations. In the case of FA microparticles, never used before as additives in silane coatings, further tests were performed in FA suspensions in AR × 10 to clarify the contribution of these particles to PropS-SH coating protectiveness. The tests included pH measurements, elemental chemical analyses, and electrochemical tests on bare bronze. Improved performances of PropS-SH coatings were achieved by La2O3, CeO2, and FA addition, with La2O3 affording the best results during 20 days of immersion. The positive influence of FA was connected to its alkaline character and to the release of soluble silicates.
机译:通过研究和调整各种因素,增强了基于施加在青铜艺术品上的3-巯基丙基三甲氧基硅烷(PROPS-SH)的涂层的保护性。特别地,通过氧化物纳米粒子(CeO2,La2O3,TiO 2)和微粒(飞灰(Fa))的适当添加剂选择优化涂层性能,并通过改变涂布涂层涂布件和RT固化时间之前的纳米粒子悬浮液的老化时间涂料。此外,评估了冷藏条件下保护硅烷溶液的可能性。侵略性环境是一款十倍浓缩合成酸雨(AR×10)。采用的技术包括电化学测试(偏振曲线记录和EIS测试)和SEM能量分散光谱(EDS)观察。在FA微粒的情况下,在硅烷涂层中的添加剂之前,在AR×10中的FA悬浮液中进行了进一步的测试,以阐明这些颗粒对ProPS-SH涂层保护性的贡献。测试包括pH测量,元素化学分析和裸铜的电化学测试。通过La2O3,CeO 2和Ga 2 O 3实现了ProPs-SH涂层的改进性能,La2O3在浸渍20天内获得最佳效果。 Fa的正效应与其碱性特征和释放可溶性硅酸盐。

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