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Variations of Polymer Porous Surface Structures via the Time-Sequenced Dosing of Mixed Solvents

机译:混合溶剂按时间顺序投加的聚合物多孔表面结构的变化

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摘要

A new approach to polystyrene surface treatment via the time-sequenced dispensing of good and poor solvent mixtures on the rotating surface of treated substrate is presented in this study. It is demonstrated that the variation of the sequencing together with other variables (e.g., temperature and solvent concentration) affects the size and depth of pores evolving on the polystyrene surface. A model of the surface pore creation, associated with the viscoelastic phase separation, surface tension, and secondary flows caused by temperature variations and the rapid evaporation of the good solvent is proposed. Experimental results of profilometric, goniometric, and optical measurements show that this approach enables the simple and quick preparation of surfaces with various numbers, diameters, and depths of individual pores, which ultimately affects not only the wetting characteristics of the surfaces but also the fate of cells cultivated there. The presented method allows the easy preparation of a large number of structured substrates for effective cell cultivation and proliferation. © 2017 American Chemical Society.
机译:在这项研究中,提出了一种通过按时间顺序分配好和不良溶剂混合物在处理过的基材旋转表面上进行聚苯乙烯表面处理的新方法。证明了测序的变化以及其他变量(例如温度和溶剂浓度)影响在聚苯乙烯表面上形成的孔的尺寸和深度。提出了一个表面孔隙产生的模型,该模型与粘弹性相分离,表面张力以及温度变化和良好溶剂的快速蒸发引起的二次流动有关。轮廓光度法,测角光度法和光学测量的实验结果表明,该方法能够简单,快速地制备具有各种数量,直径和深度的单个孔的表面,这最终不仅影响表面的润湿特性,而且还影响表面的命运。在那里培养的细胞。提出的方法允许容易地制备大量结构化的底物用于有效的细胞培养和增殖。 ©2017美国化学学会。

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