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表现出疏水/亲水相互作用的导电聚合物涂层薄膜中的诱导润湿性转变

Induced Wettability Switch in Thin Films of Conductive Polymer Coatings Exhibiting Hydrophobic/Hydrophilic Interactions.

作者信息

Ionescu Daniela, Kovaci Maria

机构信息

Department of Telecommunications and Information Technologies, Faculty of Electronics, Telecommunications and Information Technologies, "Gh. Asachi" Technical University of Iasi, Carol I Blvd., No. 11, 700506 Iasi, Romania.

Department of Communications, Faculty of Electronics, Telecommunications and Information Technologies, "Politehnica" University of Timisoara, V. Pârvan Blvd., No. 2, 300223 Timisoara, Romania.

出版信息

Sensors (Basel). 2023 Aug 2;23(15):6867. doi: 10.3390/s23156867.

Abstract

The hydrophobic/hydrophilic character of some conductive polymer (CP) coatings can be switched in the function of the working conditions of these adaptive materials. We studied the influence of electrical stimuli and intrinsic physical characteristics (nature of the polymerizable core, dopants, the droplet dimension and physical properties, surface roughness, etc.) on the CP wettability. A simulation strategy was developed for determining the contact angle (CA) of a liquid droplet on a CP layer with roughness. The method was tested for new reported CP composites, but with new dopants. The results indicate that the influences on the material wettability are correlated, and in practice, modification of more than one parameter converges to a wanted behavior of the material. E.g., the CP porous film of poly(3-hexylthiophene) (P3HT) + [6,6]-phenyl-C61-butyricacid-methyl-ester (PCBM) changes its wettability at voltages of up to 26 V, but if doping ions are inserted and the roughness geometry is modified, the voltage decreases twice. Our multi-parametrical study points out that the polymer wettability type is driven by the voltage, but this effect is tuned differently by each internal parameter. The thin films' effect and the dopants (in-situ and ex-situ) significantly decrease the actuation voltage. We also illustrated that the wettability type does not change for specific sets of parameters.

摘要

一些导电聚合物(CP)涂层的疏水/亲水特性可根据这些自适应材料的工作条件进行切换。我们研究了电刺激和固有物理特性(可聚合核心的性质、掺杂剂、液滴尺寸和物理性质、表面粗糙度等)对CP润湿性的影响。开发了一种模拟策略,用于确定具有粗糙度的CP层上液滴的接触角(CA)。该方法已针对新报道的CP复合材料进行了测试,但使用了新的掺杂剂。结果表明,对材料润湿性的影响是相关的,在实际中,对多个参数的修改会使材料呈现出所需的行为。例如,聚(3-己基噻吩)(P3HT)+[6,6]-苯基-C61-丁酸甲酯(PCBM)的CP多孔膜在高达26 V的电压下会改变其润湿性,但如果插入掺杂离子并修改粗糙度几何形状,电压会降低一半。我们的多参数研究指出,聚合物的润湿性类型由电压驱动,但每个内部参数对这种效应的调节方式不同。薄膜效应和掺杂剂(原位和异位)显著降低了驱动电压。我们还表明,对于特定的参数集,润湿性类型不会改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/002b/10422252/3ff06991e74d/sensors-23-06867-g001.jpg

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