Owen Michael J
Dow Corning Corporation, Midland, MI, 48640, USA.
Macromol Rapid Commun. 2021 Mar;42(5):e2000360. doi: 10.1002/marc.202000360. Epub 2020 Sep 16.
Many of the applications of the most familiar silicone polymer, polydimethylsiloxane (PDMS), are a consequence of its hydrophobic nature. The key quantities underlying this behavior are the water contact angle with water droplets, the surface tension of the polymer, and its interfacial tension with water. These quantities are reviewed for PDMS and the fluorsilicone polymethyltrifluoropropylsiloxane (PMTFPS) as well as some other less common, more highly fluorinated, fluorosilicones. As aliphatic fluorocarbons are usually introduced into polymers to lower surface tension, it is unexpected that the surface tension of PMTFPS is higher than PDMS. However, this observation is consistent with Zisman's early extensive studies. It is also somewhat surprising that there are no definitive values accepted for the water contact angle with PDMS and the interfacial tension at the PDMS/water interface. Some reasons for this are explored and relevant limitations considered. The variety of ways in which a PDMS surface can be presented must have a major effect on the range of water contact angles reported.
最常见的有机硅聚合物聚二甲基硅氧烷(PDMS)的许多应用都归因于其疏水性。决定这种特性的关键参数包括与水滴的水接触角、聚合物的表面张力以及聚合物与水的界面张力。本文综述了PDMS、氟硅氧烷聚甲基三氟丙基硅氧烷(PMTFPS)以及其他一些不太常见、含氟量更高的氟硅氧烷的这些参数。由于通常在聚合物中引入脂肪族碳氟化合物以降低表面张力,所以PMTFPS的表面张力高于PDMS这一现象出人意料。然而,这一观察结果与齐斯曼早期的广泛研究一致。同样有点令人惊讶的是,对于PDMS的水接触角和PDMS/水界面的界面张力,尚无公认的确切数值。本文探讨了其中的一些原因,并考虑了相关限制因素。PDMS表面呈现的多种方式必定对所报道的水接触角范围有重大影响。