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Improving the corrosion resistance of sol-gel-derived aluminoborosilicate glass coatings by nitridation

机译:通过氮化提高溶胶-凝胶衍生的铝硼硅酸盐玻璃涂层的耐腐蚀性

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摘要

The resistance to chemical corrosion, in particular, alkali attack, remains a major challenge in the design of oxide glass compositions. Using a sol-gel-derived aluminoborosilicate glass as a model system, here, we report on the effect of thermal nitridation on corrosion of oxide glasses. Nitridation of thin-film glasses is achieved by reactive treatment in a hot ammonia gas flow. Surface chemical analyses reveal the incorporation of nitrogen anions into the glass structure. Due to the increase in bond density, this results in increasing surface hardness of the nitrated region, but also in a significantly reduced corrosion rate for treatment in alkaline solutions. It is found that the improvement in the alkali resistance seems to depend on the silica content of the parent glass due to the preferences of nitrogen for Si-N bonds. As the silicon content is higher (similar to 21 at.%) than in previously studied aluminosilicate glasses, a stronger slow-down of the corrosion kinetics upon nitridation is observed. (C) 2016 Elsevier B.V. All rights reserved.
机译:在氧化物玻璃组合物的设计中,耐化学腐蚀,特别是耐碱侵蚀仍然是主要的挑战。使用溶胶-凝胶衍生的铝硼硅酸盐玻璃作为模型系统,在这里,我们报道了热氮化对氧化物玻璃腐蚀的影响。薄膜玻璃的氮化可通过在热氨气流中进行反应处理来实现。表面化学分析显示氮阴离子掺入玻璃结构中。由于键密度的增加,这导致硝化区域的表面硬度增加,而且导致在碱性溶液中处理的腐蚀速率大大降低。已经发现,由于氮对Si-N键的偏爱,耐碱性的提高似乎取决于母玻璃的二氧化硅含量。由于硅含量比以前研究的硅铝酸盐玻璃更高(约21 at。%),因此观察到氮化后腐蚀动力学的减弱更为明显。 (C)2016 Elsevier B.V.保留所有权利。

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