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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Relation between the corrosion resistance and the chemical structure of hybrid sol-gel coatings with interlinked inorganic-organic network
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Relation between the corrosion resistance and the chemical structure of hybrid sol-gel coatings with interlinked inorganic-organic network

机译:杂交溶胶 - 凝胶涂层耐腐蚀性与化学结构的关系

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摘要

Organic-inorganic hybrid coatings have been prepared by a sol-gel route from 3-glycidoxypropyltrimethoxysilane (GPTMS) and tetraethoxysilane (TEOS) with triethylenetetramine (TETA) added in the sol formulation. The main goal of this research was to evaluate how the chemical structure of the GPTMS/TEOS/TETA hybrid coatings influences the corrosion of mild steel. The presence of TETA as an epoxy opening agent offers the possibility to form interconnected epoxy-amine and silica networks. It was found by means of Si-29 HRMAS NMR spectroscopy that TETA acted as an efficient basic catalyst for the condensation of GPTMS and TEOS. This accelerates the gelation and gives limited shelf life to GPTMS/TEOS/TETA sols. Structural characterization of the cured hybrid coatings was performed using C-13 and Si-29 Solid State NMR spectroscopies. The results show that the epoxy amine reaction is the principal epoxide ring opening reaction. The slow formation of diol units with sols prepared with an excess of epoxy groups has also been observed. It was found that the polymerization of the organic network hindered the polymerization of the siloxane network. As a result, the film based on an epoxy rich off-stoichiometric formulation had a higher Persoz hardness value compared to the stoichiometric film.
机译:通过从3-丙辛氧基丙基三甲氧基硅烷(GPTM)和四乙氧基硅烷(TEOS)中加入的溶胶配方中加入三乙基甲胺(TETA)制备有机 - 无机杂化涂层。该研究的主要目标是评估GPTMS / TEOS / TETA杂交涂层的化学结构如何影响低碳钢的腐蚀。作为环氧树脂开口剂的TETA的存在提供了形成互连的环氧胺和二氧化硅网络的可能性。它通过Si-29 HRMAS NMR光谱发现,TETA作为一种有效的基本催化剂,用于GPTMS和TEOS的冷凝。这加速了胶凝,并将有限的保质期与GPTMS / TEOS / TETA SOLS提供有限的保质期。使用C-13和Si-29固态NMR光谱进行固化的杂化涂层的结构表征。结果表明环氧胺反应是主要环氧化物开环反应。还观察到用过量的环氧基制备的二醇单元的二醇单元的缓慢形成。发现有机网络的聚合阻碍了硅氧烷网络的聚合。结果,基于环氧树脂的脱离化学计量配方的膜具有更高的Persoz硬度值与化学计量膜相比。

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