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Creating Superhydrophobic Polymer Surfaces with Superstrong Resistance to Harsh Cleaning and Mechanical Abrasion Fabricated by Scalable One-Step Thermal-Imprinting
Z.B.Zhan; Z.H.Li; X.Y.Li; E.Garcell; S.Singh; M.ElKabbash; C.L.Guo
2019
发表期刊Advanced Materials Interfaces
ISSN2196-7350
卷号6期号:16页码:8
摘要In this work, a scalable thermal imprinting method that allows to directly fabricate superhydrophobic polymer surfaces with superstrong resistance to harsh cleaning and mechanical abrasion is reported. A titanium (Ti) mold is produced by femtosecond laser processing to possess a hierarchical micro- and nanoscale pattern. Through thermal imprinting, this hierarchical pattern onto poly(propylene) sheets is able to be accurately reproduced, rending the polymer surface superhydrophobic. The imprinting method employed uses an aqueous ethanol solution of stearic acid to assist demolding, and periodically uses xylene to limit mold contamination and restore the mold to excellent condition for further imprinting. These strategies allow to repeatedly use the mold over 50 times without degradation. A range of durability tests are further performed, and showed that the produced suprehydrophobility on the poly(propylene) sheets exhibit excellent durability, withstanding brush washing, ultrasound cleaning, and sandpaper abrasion. The reported method can also be used to fabricate superhydrophobic surfaces of various thermoplastics that are broadly utilized in daily life.
关键词femtosecond laser processing,mechanical durability,polymer,superhydrophobic surfaces,thermal imprinting,anisotropic wettability,rapid fabrication,nanoparticle arrays,polypropylene,anticorrosion,property,adhesion,plate,air,Chemistry,Materials Science
DOI10.1002/admi.201900240
收录类别SCI ; EI
语种英语
引用统计
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/62826
专题中国科学院长春光学精密机械与物理研究所
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GB/T 7714
Z.B.Zhan,Z.H.Li,X.Y.Li,et al. Creating Superhydrophobic Polymer Surfaces with Superstrong Resistance to Harsh Cleaning and Mechanical Abrasion Fabricated by Scalable One-Step Thermal-Imprinting[J]. Advanced Materials Interfaces,2019,6(16):8.
APA Z.B.Zhan.,Z.H.Li.,X.Y.Li.,E.Garcell.,S.Singh.,...&C.L.Guo.(2019).Creating Superhydrophobic Polymer Surfaces with Superstrong Resistance to Harsh Cleaning and Mechanical Abrasion Fabricated by Scalable One-Step Thermal-Imprinting.Advanced Materials Interfaces,6(16),8.
MLA Z.B.Zhan,et al."Creating Superhydrophobic Polymer Surfaces with Superstrong Resistance to Harsh Cleaning and Mechanical Abrasion Fabricated by Scalable One-Step Thermal-Imprinting".Advanced Materials Interfaces 6.16(2019):8.
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