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Fabrication of TMPTMA foams with SiO2 sub-microspheres gradient doped via slope-rotation method

机译:通过斜率旋转法掺杂SiO2亚微球梯度的TMPTMA泡沫的制备

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摘要

In this paper, we report a novel approach to fabricate gradient doped porous material via the slope-rotation method. By using dibutyl phthalate as the solvent, benzoin methyl ether as the photoinitiator, and silica sub-microsphere as filler, gradient doped trimethylolpropane trimethacrylate (TMPTMA) foams were fabricated after rotating and mixing, ultraviolet curing, and CO2 supercritical drying. The microstructure and gradient distribution of silica fillers were characterized by nitrogen adsorption, scanning electron microscopy, UV-visible absorption spectrum, and thermogravimetric analysis. The mechanical property was obtained by dynamic mechanical analysis. The results indicated that the approach was an effective method to fabricate gradient doped TMPTMA foams and had the potential to prepare any kind of gradient doped porous material derived from a sol-gel process. The mechanical property was further reinforced by gradient doping of silica sub-microspheres.
机译:在本文中,我们通过斜率旋转方法报告了一种制造梯度掺杂多孔材料的新方法。 通过使用邻苯二甲酸二丁酯作为溶剂,苯素蛋白甲基醚作为光引发剂,以及二氧化硅亚微球作为填料,在旋转和混合,紫外线固化和CO 2超临界干燥后制造梯度掺杂三羟甲基丙烷(TMPTMA)泡沫。 二氧化硅填料的微观结构和梯度分布通过氮吸附,扫描电子显微镜,UV可见吸收光谱和热重分析来表征。 通过动态机械分析获得力学性能。 结果表明,该方法是制造梯度掺杂TMPTMA泡沫的有效方法,并且具有制备衍生自溶胶 - 凝胶工艺的任何种类梯度掺杂多孔材料的可能性。 通过二氧化硅亚微球的梯度掺杂进一步加强了机械性能。

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