Zhou Hua, Wang Hongxia, Niu Haitao, Lin Tong
Institute for Frontier Materials, Deakin University, Geelong, VIC 3216, Australia.
Sci Rep. 2015 Oct 29;5:15863. doi: 10.1038/srep15863.
Large-strain elastic superhydrophobicity is highly desirable for its enhanced use performance and functional reliability in mechanically dynamic environments, but remains challenging to develop. Here we have, for the first time, proven that an elastic fibrous membrane after surface hydrophobization can maintain superhydrophobicity during one-directional (uniaxial) stretching to a strain as high as 1500% and two-direction (biaxial) stretching to a strain up to 700%. The fibrous membrane can withstand at least 1,000 cycles of repeated stretching without losing the superhydrophobicity. Stretching slightly increases the membrane air permeability and reduces water breakthrough pressure. It is highly stable in acid and base environments. Such a permeable, highly-elastic superhydrophobic membrane may open up novel applications in membrane separation, healthcare, functional textile and energy fields.
大应变弹性超疏水性因其在机械动态环境中增强的使用性能和功能可靠性而备受期待,但开发起来仍具有挑战性。在此,我们首次证明,表面疏水化后的弹性纤维膜在单向(单轴)拉伸至高达1500%的应变以及双向(双轴)拉伸至高达700%的应变过程中能够保持超疏水性。该纤维膜能够承受至少1000次的反复拉伸循环而不失超疏水性。拉伸会略微增加膜的透气率并降低水渗透压力。它在酸碱环境中高度稳定。这种可渗透、高弹性的超疏水膜可能会在膜分离、医疗保健、功能性纺织品和能源领域开辟新的应用。