Design of Waterborne Superhydrophobic Fabrics with High Impalement Resistance and Stretching Stability by Constructing Elastic Reconfigurable Micro-/Micro-/Nanostructures
Tian, Ning1,2; Wei, Jinfei1; Zhang, Junping1,2
刊名Langmuir
2023-04-28
期号39页码:6556−6567
DOIdoi.org/10.1021/acs.langmuir.3c00537
英文摘要

Superhydrophobic fabrics have great application potential in many fields including wearable electronic devices, sports textiles, and human health monitoring, but good water impalement resistance and stretching stability are the prerequisites. Here, we report the design of waterborne superhydrophobic fabrics with high impalement resistance and stretching stability by constructing elastic reconfigurable micro-/micro-/nanostructures. Following theoretical analysis, two approaches were proposed and employed: (i) regulating distance between the microfibers of polyester fabrics to decrease the solid−liquid contact area, and (ii) forming reconfigurable two-tier hierarchical micro-/nanostructures on the microfibers by stretching during dipping to further decrease the solid−liquid contact area. The effects of microfiber distance and micro-/nanostructures on microfibers on superhydrophobicity and impalement resistance were studied. The superhydrophobic fabrics show excellent impalement resistance as verified by high-speed water impact, water jetting, and rainfall, etc. The fabrics also show excellent stretching stability, as 100% stretching and 1000 cycles of cyclic 100% stretching−releasing have no obvious influence on superhydrophobicity. Additionally, the fabrics show good antifouling property, self-cleaning performance, as well as high abrasion and washing stability. The experimental results agree with the theoretical simulation very well. We anticipate that this study will boost the development of impalement-resistant and stretchingstable superhydrophobic surfaces

语种英语
内容类型期刊论文
源URL[http://ir.licp.cn/handle/362003/30158]  
专题兰州化学物理研究所_环境材料与生态化学研究发展中心
通讯作者Zhang, Junping
作者单位1.Center of Materials Science and Optoelectronics Engineering, University ofChinese Academy ofSciences, Beijing 100049, P. R. China
2.Center of Eco-Material and Green Chemistry, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, 730000 Lanzhou, P. R. China
推荐引用方式
GB/T 7714
Tian, Ning,Wei, Jinfei,Zhang, Junping. Design of Waterborne Superhydrophobic Fabrics with High Impalement Resistance and Stretching Stability by Constructing Elastic Reconfigurable Micro-/Micro-/Nanostructures[J]. Langmuir,2023(39):6556−6567.
APA Tian, Ning,Wei, Jinfei,&Zhang, Junping.(2023).Design of Waterborne Superhydrophobic Fabrics with High Impalement Resistance and Stretching Stability by Constructing Elastic Reconfigurable Micro-/Micro-/Nanostructures.Langmuir(39),6556−6567.
MLA Tian, Ning,et al."Design of Waterborne Superhydrophobic Fabrics with High Impalement Resistance and Stretching Stability by Constructing Elastic Reconfigurable Micro-/Micro-/Nanostructures".Langmuir .39(2023):6556−6567.
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