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首页> 外文期刊>Journal of Dispersion Science and Technology >Interaction Forces Between Graphitic Carbon Black Surfaces Coated with Polymers Using Atomic Force Microscopy
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Interaction Forces Between Graphitic Carbon Black Surfaces Coated with Polymers Using Atomic Force Microscopy

机译:利用原子力显微镜观察聚合物涂覆的石墨碳黑表面之间的相互作用力

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摘要

Carbon black dispersions are stabilized using polymeric dispersants. The stabilization is provided by adsorbed polymer layers around surfaces through interaction forces. Therefore, it is valuable to measure the interaction forces between bare and polymer-coated surfaces using atomic force microscopy to predict the behavior of dispersions. Three polymeric dispersants (Hypermer LP1, Hypermer B246, and OLOA 11000) are used in the present work to disperse the graphitic carbon black particles in an organic solvent, decaline. Hypermer B246 and OLOA 11000 produced repulsive interactions and, hence, are effective stabilizers for carbon black surfaces. Hypermer LP1 produced attractive interactions, making it an ineffective stabilizer for carbon black. Attractive interactions were also observed in blank dispersions. The experimentally determined interaction curves are compared with theoretical curves, the Derjaguin approximation. The repulsive steric interactions are also analyzed quantitatively based on the Alexander and de Gennes scaling law.
机译:炭黑分散体使用聚合物分散剂稳定。通过相互作用力围绕表面吸附的聚合物层来提供稳定性。因此,使用原子力显微镜来测量分散体的行为来测量裸露表面和聚合物涂覆表面之间的相互作用力非常有价值。在本工作中使用了三种聚合物分散剂(Hypermer LP1,Hypermer B246和OLOA 11000)将石墨炭黑颗粒分散在有机溶剂十氢化萘中。 Hypermer B246和OLOA 11000产生排斥性相互作用,因此是用于炭黑表面的有效稳定剂。 Hypermer LP1产生了吸引人的相互作用,使其成为炭黑的无效稳定剂。在空白分散液中也观察到有吸引力的相互作用。将实验确定的相互作用曲线与理论曲线Derjaguin近似进行比较。还基于亚历山大和德格尼斯定标定律对排斥性空间相互作用进行了定量分析。

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