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- W4313274672 abstract "Abstract The ice is omnipresent in our daily life and possesses intrinsic slipperiness due to the formation of a quasi-liquid layer. Thus, the functional surfaces inspired by the ice show great prospects in widespread fields from surface lubrication to antifouling coatings. Herein, we report an ice-inspired polymeric slippery surface (II-PSS) constructed by a self-lubricating liquid layer and a densely surface-grafted polymer matrix. The smooth polymer matrix could capture lubricant molecules via strong and dynamic dipole-dipole interactions to form a stable quasi-liquid layer that resembles the ice surface. The resultant II-PSS can be easily fabricated on various solid substrates (e.g., silicon, glass, aluminium oxide, plastics, etc.) with excellent smoothness (roughness ~ 0.4 nm), optical transmittance (~ 94.5%), as well as repellency towards diverse liquids with different surface tensions (22.3 ~ 72.8 mN m -1 ), pH values (1-14), salinity and organic pollutants. Further investigation shows that the II-PSS exhibits extremely low attachment for proteins and marine organisms (e.g., algae and mussel) for over one month. These results demonstrate a robust and promising strategy for high-performance antifouling coatings." @default.
- W4313274672 created "2023-01-06" @default.
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- W4313274672 date "2022-12-29" @default.
- W4313274672 modified "2023-10-17" @default.
- W4313274672 title "Ice-Inspired Polymeric Slippery Surface with Excellent Smoothness, Stability and Antifouling Properties" @default.
- W4313274672 doi "https://doi.org/10.21203/rs.3.rs-2393706/v1" @default.
- W4313274672 hasPublicationYear "2022" @default.
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