Ko Yelin, Uyar Tamer, Hinestroza Juan P
Fiber Science Program, Department of Human Centered Design, Cornell University, Ithaca, New York 14853, United States.
ACS Appl Mater Interfaces. 2024 Oct 2;16(39):53163-53176. doi: 10.1021/acsami.4c10459. Epub 2024 Sep 21.
We report on a method for synthesizing superhydrophobic coatings using a UiO-66 metal-organic framework (MOF) with discarded polyester/Spandex fabrics as raw materials. Unlike traditional recycling techniques that involve separating non-poly(ethylene terephthalate) (PET) components, our approach directly uses blended polyester/Spandex fibers. Discarded polyester/Spandex fabrics were exposed to an alkaline depolymerization process to produce disodium terephthalate (NaBDC), which is a known linker for UiO-66 synthesis. We conducted experiments under two different conditions involving different amounts of ethanol. We found that with a small amount of ethanol, the resulting UiO-66 structure, when assembled on top of a polyester/Spandex substrate, exhibited a water contact angle of ≥150°─a superhydrophobic behavior. When using larger amounts of ethanol, we noted a hydrophobic behavior with a water contact angle of ∼139°. As a control, we performed the same experiments but using discarded 100% polyester fabrics as raw materials, which resulted in a superhydrophilic behavior. We attribute the superhydrophobic behavior of the UiO-66 coatings, produced from the polyester/Spandex fabrics, to the presence of hydrophobic compounds generated by the chemical degradation of Spandex. Our approach introduces a pathway for upcycling discarded textiles into superhydrophobic coatings.
我们报道了一种以废弃聚酯/氨纶织物为原料,使用UiO-66金属有机框架(MOF)合成超疏水涂层的方法。与传统的涉及分离非聚对苯二甲酸乙二酯(PET)成分的回收技术不同,我们的方法直接使用混合的聚酯/氨纶纤维。将废弃的聚酯/氨纶织物进行碱性解聚过程以生产对苯二甲酸钠(NaBDC),这是一种已知的用于合成UiO-66的连接体。我们在两种不同条件下进行了实验,涉及不同量的乙醇。我们发现,当使用少量乙醇时,所得的UiO-66结构组装在聚酯/氨纶基材上时,表现出≥150°的水接触角——一种超疏水行为。当使用大量乙醇时,我们注意到水接触角约为139°的疏水行为。作为对照,我们进行了相同的实验,但使用废弃的100%聚酯织物作为原料,结果产生了超亲水行为。我们将由聚酯/氨纶织物制成的UiO-66涂层的超疏水行为归因于氨纶化学降解产生的疏水化合物的存在。我们的方法引入了一种将废弃纺织品升级循环为超疏水涂层的途径。