Surface Modification of Barium Sulfate Particles

Jérémy Longlade, C. Delaite, Anne-Sophie Schuller
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引用次数: 2

Abstract

In this study, surface modification of barium sulfate was investigated using several model molecules for chemical treatment: ethanesulfonic acid, butyric acid, trimethoxy(propyl) silane and phosphoric acid 2-hydroxyethyl methacrylate. Samples were characterized by FT-IR and TGA to check the capability of these model molecules to interact with BaSO4 surface. The results pointed out the presence of an organic layer around the surface after the chemical treatment even after several washings to remove all species in excess. Model molecules were grafted onto BaSO4 surface and grafted density was determined. It reveals that phosphoric acid and carboxylic acid are the best candidates for the modification of BaSO4 surface. Both can be used as anchoring groups to modify the hydrophilic balance of barium sulfate surface in order to avoid the formation of aggregates and to improve the compatibility of this filler within hydrophobic polymer matrix.
硫酸钡颗粒的表面改性
在本研究中,使用几种化学处理的模型分子:乙磺酸、丁酸、三甲氧基(丙基)硅烷和磷酸甲基丙烯酸2-羟基乙酯对硫酸钡进行了表面改性。通过FT-IR和TGA对样品进行表征,以检查这些模型分子与BaSO4表面相互作用的能力。结果指出,在化学处理之后,甚至在多次洗涤以去除所有过量物种之后,表面周围也存在有机层。将模型分子接枝到BaSO4表面并测定接枝密度。结果表明,磷酸和羧酸是BaSO4表面改性的最佳选择。两者都可以用作锚定基团来改变硫酸钡表面的亲水平衡,以避免聚集体的形成,并提高该填料在疏水聚合物基体中的相容性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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