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首页> 外文期刊>Journal of nanoscience and nanotechnology >Synthesis of Organic-Inorganic Hybrid Sols with Nano Silica Particles and Organoalkoxysilanes for Transparent and High-Thermal-Resistance Coating Films Using Sol-Gel Reaction
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Synthesis of Organic-Inorganic Hybrid Sols with Nano Silica Particles and Organoalkoxysilanes for Transparent and High-Thermal-Resistance Coating Films Using Sol-Gel Reaction

机译:溶胶-凝胶反应合成纳米二氧化硅和有机烷氧基硅烷的有机-无机杂化溶胶用于透明和高耐热性涂膜

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摘要

Organic-inorganic hybrid sols were synthesized from nano silica particles dispersed in water and from organoalkoxysilanes, using the sol-gel reaction. This work focuses on the effects of the three multifunctional organoalkoxysilanes dimethyldimethoxysilane (DMDMS), methyltrimethoxysilane (MTMS), and tetramethoxysilane (TMOS) to form a transparent and high-thermal-resistance coating film. The stability of the hybrid sol was evaluated as a function of the reaction time for 10 d through the variation of the viscosity. The viscosity of the silica/DMDMS and silica/MTMS sol was slightly increased for 10 d. The multifunctional organoalkoxysilanes formed dense silica networks through hydrolysis and condensation reaction, which enhanced the thermal resistance of the coating films. No thermal degradation of the silica/DMDMS sample occurred up to 600℃, and none of the silica/MTMS and silica/TMOS samples occurred either up to 700℃. The organic-inorganic hybrid sols were coated on the glass substrate using a spin-coating procedure. The organic-inorganic hybrid sols formed flat coating films without cracks. The transmittance of the hybrid sol coating films using MTMS and DMDMS was shown to be over 90%. The transmittance of the silica/TMOS sol coating film reacted for 10 d abruptly decreased due to faster gelation. The silica/DMDMS and silica/MTMS hybrid sols formed smooth coating films while the surface roughness of the silica/TMOS coating film markedly increased when the hybrid sol reacted for 10 d. The increase of the surface roughness of the silica/TMOS coating film can be attributed to the degradation of the stability of the hybrid sol and to the loss of transmittance of the coating film. It was confirmed in this study that the use of organic-inorganic hybrid sol can yield transparent and high-thermal-resistance coating films.
机译:使用溶胶-凝胶反应,由分散在水中的纳米二氧化硅颗粒和有机烷氧基硅烷合成有机-无机杂化溶胶。这项工作着眼于三种多功能有机烷氧基硅烷二甲基二甲氧基硅烷(DMDMS),甲基三甲氧基硅烷(MTMS)和四甲氧基硅烷(TMOS)的作用,以形成透明且高耐热性的涂膜。通过粘度的变化,将杂化溶胶的稳定性作为10 d反应时间的函数进行评估。二氧化硅/ DMDMS和二氧化硅/ MTMS溶胶的粘度略微增加了10天。多功能有机烷氧基硅烷通过水解和缩合反应形成致密的二氧化硅网络,从而提高了涂膜的耐热性。二氧化硅/ DMDMS样品在600℃以下没有发生热降解,二氧化硅/ MTMS和二氧化硅/ TMOS样品在700℃以下都没有发生热降解。使用旋转涂布程序将有机-无机杂化溶胶涂布在玻璃基板上。有机-无机杂化溶胶形成没有裂纹的平坦涂膜。使用MTMS和DMDMS的混合溶胶涂膜的透射率显示超过90%。由于更快的胶凝作用,反应了10 d的二氧化硅/ TMOS溶胶涂膜的透射率突然降低。二氧化硅/ DMDMS和二氧化硅/ MTMS杂化溶胶形成光滑的涂膜,而当杂化溶胶反应10 d时,二氧化硅/ TMOS涂膜的表面粗糙度显着增加。二氧化硅/ TMOS涂膜的表面粗糙度的增加可归因于杂化溶胶的稳定性的降低和涂膜的透射率的损失。这项研究证实,使用有机-无机杂化溶胶可以产生透明且高耐热性的涂膜。

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