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Dispersion and agglomeration mechanism of flaky graphite particles in aqueous solution

机译:水溶液中香石墨颗粒的分散体和附聚机理

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The dispersion and agglomeration behavior of flaky graphite particles in an aqueous solution was studied. The small particles of flaky graphite naturally formed a large and compact agglomeration in an aqueous solution at pH 7.0 and 9.0, respectively. The theoretical calculation result based on typical DLVO theory was opposite the phenomenon observed by optical microscope, indicating that the interaction force between the flaky graphite particles exceeded the van der Waals and electrostatic double-layer forces. When the extended DLVO theory was used, the total interaction energy (U-T=U-A+U-R+U-HI) was negative over most of the distance range, indicating that the agglomeration of the small particles was attributed to the attraction. This result indicated that hydrophobic interactions dominated the dispersion and agglomeration behavior of the hydrophobic flaky graphite particles.
机译:研究了片状石墨颗粒在水溶液中的分散和聚集行为。 片状石墨的小颗粒自然地在pH7.0和9.0的水溶液中形成大而紧凑的附聚。 基于典型DLVO理论的理论计算结果与光学显微镜观察的现象相反,表明胶片石墨颗粒之间的相互作用力超过了范德华和静电双层力。 当使用延伸的DLVO理论时,总相互作用能量(U-T = U-A + U-R + U-R + U-HI)在大部分距离范围内为阴性,表明小颗粒的附聚归因于吸引力。 该结果表明,疏水性相互作用主导了疏水性味道石墨颗粒的分散和附聚行为。

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