Nanotechnology Center, Institute of Textiles and Clothing, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, P. R. China.
Sci Rep. 2017 May 24;7(1):2354. doi: 10.1038/s41598-017-02615-1.
Breath figures (BFs) are a kind of water droplet arrays that can be formed by condensing aqueous vapor onto a cold surface, such as dewy phenomenon on a spider web. This study developed a BF-inspired approach for direct introduction of desired materials onto the textile surfaces with three-dimensionally conformal porous microstructures by the evaporation of solution-coated fabric under high humidity environment, which brings a brand-new kind of modified textiles, three-dimensionally conformal porous microstructured fabrics (CPMFs). Such kind of CPMFs can possess customized multifunctional properties of introduced materials, and meanwhile maintain the inherent properties and unique texture features of fabrics. This nature-inspired BF approach is robust and versatile for customized preparation of CPMFs based on different fabrics with different common polymers. Moreover, it is also feasible for one-step functionalization of CPMFs by the incorporation of nanoparticles (such as titanium dioxide nanoparticles, TiO NPs) into the porous microstructures during the BF process. Comparing to the sample modified without porous microstructures, the resultant TiO NPs-incorporated CPMFs show an obviously enhanced performance on photocatalytic degradation of pollutants under the same ultraviolet irradiation conditions.
呼吸图案(BFs)是一种水滴阵列,可通过将水蒸气冷凝到冷表面上形成,例如蜘蛛网的露水现象。本研究通过在高湿度环境下蒸发涂覆有溶液的织物,开发了一种受 BF 启发的方法,可将所需材料直接引入具有三维共形多孔微结构的纺织品表面,从而带来了一种全新的改性纺织品,即三维共形多孔微结构织物(CPMFs)。这种 CPMFs 可以具有所引入材料的定制多功能特性,同时保持织物的固有特性和独特的质地特征。这种受自然启发的 BF 方法稳健且通用,可根据不同的织物和不同的常见聚合物来定制制备 CPMFs。此外,通过在 BF 过程中将纳米颗粒(例如二氧化钛纳米颗粒,TiO NPs)掺入多孔微结构中,CPMFs 还可以一步实现功能化。与未改性多孔微结构的样品相比,在相同的紫外线照射条件下,所得 TiO NPs 掺入的 CPMFs 在光催化降解污染物方面表现出明显增强的性能。