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A topography/chemical composition gradient polystyrene surface: Toward the investigation of the relationship between surface wettability and surface structure and chemical composition

机译:形貌/化学成分梯度聚苯乙烯表面:关于表面润湿性与表面结构和化学成分之间关系的研究

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摘要

In this paper, we have prepared of a topography/chemical composition gradient polystyrene (PS) surface, i.e., an orthogonal gradient surface, to investigate the relationship between surface wettability and surface structure and chemical composition. The prepared surface shows a one-dimensional gradient in wettability in the x, y, and diagonal directions, including hydrophobic to hydrophilic, superhydrophobic to hydrophobic, superhydrophobic to superhydrophilic gradients, and so forth. These one-dimensional gradients have different gradient values, gradient range, and contact angle hysteresis, which lie on both the surface roughness and the surface compositions. From the trend of variation of contact angle hysteresis, it can be concluded that the transition from the Cassie's model to the Wenzel's model occurs both by decreasing surface roughness and by increasing surface hydrophilic compositions. Moreover, the transition is more effective via changing surface chemical composition than changing surface roughness herein.
机译:在本文中,我们制备了形貌/化学组成梯度聚苯乙烯(PS)表面,即正交梯度表面,以研究表面润湿性与表面结构和化学组成之间的关系。制备的表面在x,y和对角线方向上显示出一维的可湿性梯度,包括疏水性到亲水性,超疏水性到疏水性,超疏水性到超亲水性梯度,等等。这些一维梯度具有不同的梯度值,梯度范围和接触角滞后,这取决于表面粗糙度和表面组成。从接触角磁滞的变化趋势可以得出结论,从卡西模型到温泽尔模型的转变既通过减小表面粗糙度,又通过增加表面亲水性成分来实现。而且,通过改变表面化学组成,转变比改变表面粗糙度更有效。

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