Faculty of Science, Material Science and Technologies , Turkish-German University , Sahinkaya Cad. No. 86 , Beykoz, Istanbul 34820 , Turkey.
Makromolekulare Chemie und Papierchemie , Technische Universität Darmstadt , Alarich-Weiss-Straße 8 , Darmstadt 64287 , Germany.
ACS Appl Mater Interfaces. 2018 Oct 31;10(43):37478-37488. doi: 10.1021/acsami.8b12116. Epub 2018 Oct 16.
We introduce the design of Janus-type paper sheets where one side of the paper exhibits superhydrophobic properties, whereas the other side of the sheet remains hydrophilic and therefore can take up aqueous solutions by capillary wicking. Such papers are being prepared by chemically immobilizing a thin hybrid coating on paper sheets that consists of cross-linked poly(dimethylsiloxane) (PDMS) and inorganic particles of various sizes ranging from nanometers to several tens of micrometers. Both commercially available Whatman No. 1 filter paper and lab-engineered cotton linters-based paper substrates were treated with this approach. The hybrid paper sheets have high chemical durability, mechanical stability, and flexibility because of a covalent attachment of the particles to paper fibers and the inherent elasticity of PDMS chains. In spite of the superhydrophobicity of the coating, the untreated side of the paper substrates preserved its hydrophilicity, resulting in Janus-type wetting and wicking properties, respectively. The functionalized paper samples remained porous and permeable to gases, while possessing a gradual change in chemistry between the two sides exhibiting a dramatic wetting contrast. Such two-sided properties open up new applications for such hybrid paper materials, such as in wound dressings and/or bandages with a liquid directing and confinement ability.
我们介绍了 Janus 型纸页的设计,其中纸张的一侧具有超疏水性,而纸页的另一侧保持亲水性,因此可以通过毛细作用吸收水溶液。通过将交联的聚二甲基硅氧烷 (PDMS) 和从纳米到数十微米不等的各种尺寸的无机颗粒化学固定在纸页上,可以制备这种纸。商用的 Whatman No.1 滤纸和实验室工程化的棉绒纤维纸基都可以采用这种方法进行处理。由于颗粒与纸纤维的共价键合以及 PDMS 链的固有弹性,混合纸页具有高化学耐久性、机械稳定性和柔韧性。尽管涂层具有超疏水性,但纸基材未经处理的一侧仍保持亲水性,从而分别表现出 Janus 型润湿和吸液性能。功能化的纸样仍然保持多孔和透气性能,同时在表现出显著润湿对比的两侧之间具有化学的逐渐变化。这种双面特性为这种混合纸材料开辟了新的应用,例如在具有液体引导和限制能力的伤口敷料和/或绷带中。