Hierarchical biocide-free silicone/graphene-silicon carbide nanocomposite coatings for marine antifouling and superhydrophobicity of ship hulls

被引:40
作者
Selim, Mohamed S. [1 ]
Azzam, Ahmed M. [2 ,3 ]
Higazy, Shimaa A. [1 ]
Shenashen, Mohamed A. [1 ,2 ]
Elmarakbi, Ahmed [4 ]
Ebara, Mitsuhiro [2 ]
El-Safty, Sherif A. [2 ]
机构
[1] Egyptian Petr Res Inst EPRI, Petr Applicat Dept, Cairo 11727, Egypt
[2] Natl Inst Mat Sci NIMS, Res Ctr Macromol & Biomat, 1-2-1 Sengen, Tsukuba, Ibaraki 3050047, Japan
[3] Theodor Bilharz Res Inst TBRI, Dept Environm Res, POB 30, Giza 12411, Egypt
[4] Northumbria Univ, Fac Engn & Environm, Newcastle Upon Tyne NE1 8ST, England
关键词
Silicone coating; Superhydrophobic; Fouling release surfaces; Micro/nanoroughness; Nanofillers; Nanocomposite; FOULING-RELEASE COATINGS; SURFACE MODIFICATION; NANOROD COMPOSITE; GRAPHENE OXIDE; FABRICATION; STRATEGIES; NANOSHEETS; DESIGN; METAL;
D O I
10.1016/j.ces.2024.119929
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
A new series of fluorine-free, nonbiocidal, and hierarchical superhydrophobic silicone coatings filled with reduced graphene oxide (RGO)/8-SiC bamboo-like nanocomposites was successfully fabricated as durable ternary marine fouling release (FR) surfaces. RGO/8-SiC hybrid was used as coating nanofiller that would release fouling and confer surface robustness. It was facilely created using a straightforward one-phase ultrasonication technique. The dispersion of different concentrations of RGO sheets decorated with 8-SiC bamboo-like fillers was determined to study the superhydrophobicity and antifouling behaviors of polysiloxane nanocomposites. RGO was prepared through a simple hydrothermal technique. Solution casting was used to distribute the RGO/8-SiC nanofillers throughout a silicone matrix. Atomic force microscopy, surface free energy, and water contact angle (WCA) were employed to examine the superhydrophobicity and micro/nanoroughness of the coatings. The mechanical, anticorrosive, and durability characteristics of the silicone-RGO/8-SiC-filled composites were also investigated. The antifouling effects of the coating systems were evaluated in the laboratory for 30 days with specific bacteria. The silicone-RGO/8-SiC (3 wt%) composite with the best dispersion, highest WCA (156 degrees), and lowest surface free energy (12.7 mN/m) among the composites exhibited favorable FR characteristics. The welldispersed PDMS-RGO/8-SiC (3 wt% nanofiller) composite presented the minimum degradation and cell viability percentages against Gram-positive and Gram-negative bacteria as well as diatoms. Therefore, this study produced a series of nonstick and fluorine-free ternary FR nanocomposites for maritime coatings with surface durability, superhydrophobicity, and fouling retardancy. This work highlights the design and preparation of multifunctional marine nanocoatings with excellent antifouling performance, easy applicability, and superhydrophobicity properties.
引用
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页数:14
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