Antibiofouling Slippery Liquid Impregnated Pulsed Plasma Poly(styrene) Surfaces

Author:

Rawlinson Joe M.1,Cox Harrison J.1,Hopkins Grant2,Cahill Patrick2,Badyal Jas Pal S.1ORCID

Affiliation:

1. Department of Chemistry Science Laboratories Durham University DH1 3LE Durham UK

2. Cawthron Institute Nelson 7010 New Zealand

Abstract

AbstractBiofouling is a major global environmental and economic challenge wherein organisms settle on solid surfaces submerged in natural waters. This leads to the spread of invasive marine species around the globe, accelerates surface deterioration through microbially‐induced corrosion, and inflates maritime vessel fuel consumption which leads to greater greenhouse gas emissions. In this study, pulsed plasma poly(styrene) nanocoatings impregnated with eco‐friendly liquids are produced that yield slippery surfaces through aromatic–aliphatic intermolecular interactions (water droplet contact angle hysteresis and sliding angle values ≈1–2°). The antibiofouling performance of these slippery surfaces is demonstrated using laboratory‐based marine bioassays and real‐world field trials in freshwater (pond water) and seawater (ocean) environments. Low‐cost and substrate‐independent pulsed plasmachemical deposition combined with eco‐friendly liquid impregnation provides a sustainable approach to tackling environmental biofouling.

Funder

Royal Society

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials

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