Li Yinyong, John Jacob, Kolewe Kristopher W, Schiffman Jessica D, Carter Kenneth R
Department of Polymer Science and Engineering, ‡Department of Chemical Engineering, University of Massachusetts , Amherst, Massachusetts 01003, United States.
ACS Appl Mater Interfaces. 2015 Oct 28;7(42):23439-44. doi: 10.1021/acsami.5b04957. Epub 2015 Oct 16.
The fabrication and advanced function of large area biomimetic superhydrophobic surfaces (SHS) and slippery lubricant-infused porous surfaces (SLIPS) are reported. The use of roll-to-roll nanoimprinting techniques enabled the continuous fabrication of SHS and SLIPS based on hierarchically wrinkled surfaces. Perfluoropolyether hybrid molds were used as flexible molds for roll-to-roll imprinting into a newly designed thiol-ene based photopolymer resin coated on flexible polyethylene terephthalate films. The patterned surfaces exhibit feasible superhydrophobicity with a water contact angle around 160° without any further surface modification. The SHS can be easily converted into SLIPS by roll-to-roll coating of a fluorinated lubricant, and these surfaces have outstanding repellence to a variety of liquids. Furthermore, both SHS and SLIPS display antibiofouling properties when challenged with Escherichia coli K12 MG1655. The current article describes the transformation of artificial biomimetic structures from small, lab-scale coupons to low-cost, large area platforms.
报道了大面积仿生超疏水表面(SHS)和注入滑润剂的多孔表面(SLIPS)的制备及其先进功能。采用卷对卷纳米压印技术能够基于分层皱纹表面连续制备SHS和SLIPS。全氟聚醚混合模具用作柔性模具,用于在涂覆于柔性聚对苯二甲酸乙二酯薄膜上的新设计的硫醇-烯基光聚合物树脂中进行卷对卷压印。图案化表面呈现出可行的超疏水性,水接触角约为160°,无需任何进一步的表面改性。通过对氟化润滑剂进行卷对卷涂覆,SHS可轻松转化为SLIPS,并且这些表面对多种液体具有出色的排斥性。此外,当受到大肠杆菌K12 MG1655挑战时,SHS和SLIPS均表现出抗生物污损特性。本文描述了人工仿生结构从小规模实验室试样到低成本大面积平台的转变。