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Design and prediction of dye dispersibility stabilized by polymeric dispersants using a Dye-Monomer interaction force measurement

机译:用染料单体相互作用力测量通过聚合物分散剂稳定染料分散性的设计与预测

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In this study, we propose a dye-monomer interaction force measurement technique based on atomic force microscopy (AFM) to predict the performance of polymeric dispersants. Cantilevers modified with functional monomers such as styrene, N-butyl acrylate (BA), and 2-(N-phthalimido)ethyl methacrylate (PEMA) were used to characterize the interaction force between these functional monomers and a target dye (Disperse Blue 359). The interaction forces of each monomer-styrene, BA, and PEMA-with Disperse Blue 359 were measured as 10.75 nN, 7.06 nN, and 21.31 nN, respectively, and their trend was consistent with dipole-moment values obtained from density function theory (DFT) calculations (p(styrene) = 0.0001, mu(PEMA) = 2.3158, mu(Disperse Blue 359) = 3.0368). We synthesized a series of model polymers containing specific functional monomers (CoPS10, CoBA, CoPPEMAs) with similar molecular weights, molecular-weight distributions, and acid contents and compared their actual performance with that predicted from interaction force measurement data. The results were well correlated with the interaction force measurement data. The effect of the PEMA content on dye dispersion stability was also investigated; the results indicated that both the PEMA content and the type of dye-interacting group greatly influenced the characteristics of the dispersion.
机译:在该研究中,我们提出了一种基于原子力显微镜(AFM)的染料单体相互作用力测量技术,以预测聚合物分散剂的性能。用诸如苯乙烯,正丁基丙烯酸酯(Ba)和2-(N-酞米胺)乙基丙烯酸甲酯(PEMA)的功能性单体改性的悬臂用于表征这些功能性单体和靶染料(分散蓝359)之间的相互作用力。每种单体 - 苯乙烯,Ba和Pema的相互作用力分别测量为10.75 nn,7.06 nn和21.31 nn,并且它们的趋势与从密度函数理论获得的偶极力矩值一致(DFT )计算(p(苯乙烯)= 0.0001,mu(pema)= 2.3158,mu(分散蓝359)= 3.0368)。我们合成了一系列含有特异性官能单体(COPS10,COBA,COPPEMA)的模型聚合物,其具有类似的分子量,分子量分布和酸含量,并将其实际性能与从相互作用力测量数据预测的预测进行比较。结果与相互作用力测量数据良好相关。 PEMA含量对染料分散稳定性的影响也被研究了;结果表明,PEMA含量和染料相互作用组的类型极大地影响了分散的特征。

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