Shi Zhenghao, Sheng Yifeng, Wu Jianhui, Cui Jiwei, Lin Wei, Ngai To
Department of Chemistry, The Chinese University of Hong Kong, Shatin, Hong Kong 999077, China.
Department of Biomass and Leather Engineering, Key Laboratory of Leather Chemistry and Engineering of Ministry of Education, Sichuan University, Chengdu 610065, China.
Langmuir. 2024 Mar 5;40(9):4751-4761. doi: 10.1021/acs.langmuir.3c03514. Epub 2024 Feb 22.
Waterborne polyurethane (WPU) latex nanoparticles with proven interfacial activity were utilized to stabilize air-water interfaces of Pickering foams through interfacial interaction with hydrophobic fumed silica particles (SPs). The rheological properties of the Pickering foam were tailored through adjustment of their SP content, which influenced their formability and stability. A Pickering foam stabilized with WPU and SPs was used as a template to prepare a WPU-SP composite porous film. The as-prepared film had intact open-cell porous structures, which increased its water absorption and water-vapor permeability. The porous film was used as a middle layer in the preparation of synthetic leather via a four-step "drying method". Compared with commercial synthetic leather, the lab-made synthetic leather with a middle layer made of the WPU-SP composite porous film exhibited a richer porous structure, acceptable wetting on a fabric substrate, a thicker porous layer, and higher water-vapor permeability. This work provides a novel and facile approach for preparing WPU-SP Pickering foams. Furthermore, the foams have the potential to function as a sustainable material for creating a porous-structured synthetic leather made from WPU, which may be utilized as an alternative to solvent-based synthetic leather.
具有已证实界面活性的水性聚氨酯(WPU)乳胶纳米颗粒通过与疏水性气相二氧化硅颗粒(SPs)的界面相互作用,用于稳定皮克林泡沫的气-水界面。通过调整SPs含量来定制皮克林泡沫的流变特性,这会影响其可成型性和稳定性。用WPU和SPs稳定的皮克林泡沫作为模板来制备WPU-SP复合多孔膜。所制备的膜具有完整的开孔多孔结构,这增加了其吸水性和水蒸气渗透性。该多孔膜通过四步“干燥法”用作制备合成革的中间层。与商业合成革相比,具有由WPU-SP复合多孔膜制成中间层的实验室自制合成革表现出更丰富的多孔结构、在织物基材上可接受的润湿性、更厚的多孔层以及更高的水蒸气渗透性。这项工作为制备WPU-SP皮克林泡沫提供了一种新颖且简便的方法。此外,这些泡沫有潜力作为一种可持续材料,用于制造由WPU制成的多孔结构合成革,其可作为溶剂基合成革的替代品。