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高岭石/聚丙烯酰胺插层复合物的制备与表征 总被引:11,自引:0,他引:11
The kaolinite-polyacrylamide intercalation compound was prepared first by the displacement reaction of the kaolinite-formamide intercalation precursor with 30% acrylamide ethanol solution, and then the polymerization under 140℃ for 15h with the catalysis of dibenzoyl peroxide. The XRD analyses showed that the basal spacings of kaolinite-acrylamide intercalation compound and kaolinite-polyacrylamide compound were 1.135nm and 1.144nm respectively. The kaolinite-polyacrylamide compound was able to resist to 30-min washing with water, but the kaolinite-acrylamide compound was unstable during washing. FT-IR proved that the hydrogen bonds were formed between kaolinite Si-O group and polyacrylamide NH group and between kaolinite inner surface hydroxyl and polyacrylamide C=O group, and that parts of NH group keyed into the kaolinite ditrigonal hole. TG and DTG analysis proved that kaolinite-polyacrylamide was stable under 350℃. A net weight loss of 16.63% between 370℃~500℃ is due to the removal of intercalated polyacrylamide from the interlamellar space of kaolinite. These results clearly indicate that acrylamide has been intercalated into the layers of kaolinite and was polymerized in-situ.Based on the TG data, the formula of the kaolinite-polyacrylamide intercalation compound, Al2Si2O5(OH)4?CH2CHCONH2?0.736, can be calculated. 相似文献
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硅藻土表面羟基的漫反射红外光谱(DRIFT)研究 总被引:3,自引:0,他引:3
运用傅里叶变换漫反射红外光谱(DRIFT)及氘化技术,研究了硅藻土的表面羟基结构及其在热处理中的变化。 相似文献
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高岭石/甲酰胺插层的Raman和DRIFT光谱 总被引:9,自引:0,他引:9
用Raman和漫反射红外光谱研究高岭石/甲酰胺插层反应机理及插层作用对高岭石微结构的影响。 相似文献
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