Amphiphilic Non‐Isocyanate Polyurethane Coatings With Tunable Antifouling and Fouling‐Release Performance: A Log‐Ratio Assessment Framework

ABSTRACT This study investigates amphiphilic non‐isocyanate polyurethane (NIPU) coatings containing reactive hydrophobic poly(dimethylsiloxane) (PDMS) and hydrophilic methoxy poly(ethylene glycol) (MPEG) prepolymers for marine antifouling (AF) and fouling‐release (FR) applications. The amphiphilic coating composition was systematically tuned by varying the molecular weights of the hydrophilic and hydrophobic segments, amphiphilic prepolymer concentration, and coating cross‐link density to establish structure–property relationships governing AF/FR performance. The coatings were evaluated against representative marine foulants, including Navicula incerta , Cellulophaga lytica , Ulva linza , and Chlorella vulgaris . Coatings with lower cross‐link density and higher molecular weight MPEG exhibited the best overall AF/FR performance across multiple species, outperforming silicone elastomer and polyurethane standard coatings. We attributed enhanced performance to improved mobility of amphiphilic segments and increased interfacial hydration associated with the hydrophilic MPEG component, as reflected in lower water contact angles and increased water absorption. We introduced a log‐ratio framework to compare AF/FR performance across different organisms and experimental conditions using a unified dimensionless metric. Overall, this work demonstrates the potential of amphiphilic NIPU coatings as tunable, non‐fluorinated materials for marine antifouling applications.

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Publication Details

Journal
Advanced Materials Interfaces
Published
2026-10-05
DOI
https://doi.org/10.1002/admi.70683
Primary Topic
Marine Biology and Environmental Chemistry
Type
article
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article

Amphiphilic Non‐Isocyanate Polyurethane Coatings With Tunable Antifouling and Fouling‐Release Performance: A Log‐Ratio Assessment Framework

Ivan Hevus, Shane J. Stafslien, Dean C. Webster, Anthony S. Clare et al.
Advanced Materials Interfaces
Marine Biology and Environmental Chemistry
article

Amphiphilic Non‐Isocyanate Polyurethane Coatings With Tunable Antifouling and Fouling‐Release Performance: A Log‐Ratio Assessment Framework

Ivan Hevus, Shane J. Stafslien, Dean C. Webster, Anthony S. Clare, Lyndsi J. VanderWal, John A. Finlay, Nastaran Shahzadeh, Peter Allen
article en

Abstract

ABSTRACT This study investigates amphiphilic non‐isocyanate polyurethane (NIPU) coatings containing reactive hydrophobic poly(dimethylsiloxane) (PDMS) and hydrophilic methoxy poly(ethylene glycol) (MPEG) prepolymers for marine antifouling (AF) and fouling‐release (FR) applications. The amphiphilic coating composition was systematically tuned by varying the molecular weights of the hydrophilic and hydrophobic segments, amphiphilic prepolymer concentration, and coating cross‐link density to establish structure–property relationships governing AF/FR performance. The coatings were evaluated against representative marine foulants, including Navicula incerta , Cellulophaga lytica , Ulva linza , and Chlorella vulgaris . Coatings with lower cross‐link density and higher molecular weight MPEG exhibited the best overall AF/FR performance across multiple species, outperforming silicone elastomer and polyurethane standard coatings. We attributed enhanced performance to improved mobility of amphiphilic segments and increased interfacial hydration associated with the hydrophilic MPEG component, as reflected in lower water contact angles and increased water absorption. We introduced a log‐ratio framework to compare AF/FR performance across different organisms and experimental conditions using a unified dimensionless metric. Overall, this work demonstrates the potential of amphiphilic NIPU coatings as tunable, non‐fluorinated materials for marine antifouling applications.

Advanced Materials Interfaces
North Dakota State University (US), Newcastle University (GB)
Openalex Percentile: Top 17%
Marine Biology and Environmental Chemistry
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Amphiphilic Non‐Isocyanate Polyurethane Coatings With Tunable Antifouling and Fouling‐Release Performance: A Log‐Ratio Assessment Framework — Ivan Hevus, Shane J. Stafslien, et al. · Advanced Materials Interfaces (2026) | TGRS Research Map | TGRS