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Adsorption property of citrate dispersant on BaTiO_3 particles in aqueous solution 被引量:1

Adsorption property of citrate dispersant on BaTiO_3 particles in aqueous solution
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摘要 Dispersion behavior of ultra fine BaTiO3 particles in the aqueous solution of ammonium citrate (NH4-CA) or citric acid lanthanum chelate (NH4-La-CA) was investigated. The dispersion property was characterized with sedimentation value. It is easier to obtain well dispersed slurry with NH4La-CA than NH4-CA. In an attempt to better understand the role of citric acid radical, simulation of the dispersant adsorption on BaTiO3 particle was performed with universal force field (UFF). It is demonstrated that the interaction between citric acid radical and BaTiO3 particle surface is a weak chemical adsorption. Trivalent citric acid radical is adsorbed on BaTiO3 particle surface with maximal adsorption energy. And, larger molecules of NH4-La-CA formed by adding La^3+ lead to better dispersion property than NHn-CA. Dispersion behavior of ultra fine BaTiO_3 particles in the aqueous solution of ammonium citrate (NH_4-CA) or citric acid lanthanum chelate (NH_4-La-CA) was investigated. The dispersion property was characterized with sedimentation value. It is easier to obtain well dispersed slurry with NH_4La-CA than NH_4-CA. In an attempt to better understand the role of citric acid radical, simulation of the dispersant adsorption on BaTiO_3 particle was performed with universal force field (UFF). It is demonstrated that the interaction between citric acid radical and BaTiO3 particle surface is a weak chemical adsorption. Trivalent citric acid radical is adsorbed on BaTiO3 particle surface with maximal adsorption energy. And, larger molecules of NH_4-La-CA formed by adding La3+ lead to better dispersion property than NH_4-CA.
出处 《Journal of Central South University of Technology》 EI 2007年第2期202-205,共4页 中南工业大学学报(英文版)
基金 Project(020951) supported by Natural Science Fundation of Guangdong Province, China
关键词 citrate dispersant BATIO3 adsorption 柠檬酸盐分散剂 钛酸钡颗粒 陶瓷粉末 吸附 水溶液
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