海洋防污水凝胶涂层研究进展

刘嘉鑫, 王丽洁, 李厚为, 李少香, 曲文娟

化工新型材料 ›› 2023, Vol. 51 ›› Issue (11) : 68 -73.

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化工新型材料 ›› 2023, Vol. 51 ›› Issue (11) : 68-73. DOI: 10.19817/j.cnki.issn1006-3536.2023.11.010
综述与专论

海洋防污水凝胶涂层研究进展

作者信息 +

Research progress on marine anti-fouling hydrogel coatings

Author information +
文章历史 +
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摘要

针对海洋生物污损问题,采用涂覆防污涂料无疑是最廉价、最有效和最方便的途径。水凝胶是一种可以吸水但是又不改变内部结构的高分子网络体系,用其制备的水凝胶防污涂层具有优异的防污性能,对其机械性能和附着力进行改善以后,有望成为第三代污垢释放和防污材料。综述了近年来应用于海洋防污的纤维素类水凝胶涂层、海藻酸类水凝胶涂层、聚乙烯醇类水凝胶涂层、聚乙二醇类水凝胶涂层、两性离子类水凝胶涂层及其他合成水凝胶涂层的研究进展。

Abstract

To solve the problem of marine biological fouling,the use of anti-fouling coatings is undoubtedly the cheapest,most effective and most convenient way.Hydrogel is a kind of polymer network system that can absorb water without changing the internal structure.The hydrogel anti-fouling coating prepared from it has excellent anti-fouling performance.After improving its mechanical properties and adhesion,it is expected to become the third generation of fouling-release and anti-fouling materials.The research progress of cellulose hydrogel coating,alginate hydrogel coating,polyvinyl alcohol hydrogel coating,polyethylene glycol hydrogel coating,amphoteric ion-based hydrogel coating and other synthetic hydrogel coating applied to marine anti-fouling efforts in recent years was reviewed.

关键词

海洋生物污损 / 水凝胶 / 防污 / 涂层

Key words

marine biological fouling / hydrogel / anti-fouling / coating

引用本文

引用格式 ▾
刘嘉鑫, 王丽洁, 李厚为, 李少香, 曲文娟. 海洋防污水凝胶涂层研究进展[J]. 化工新型材料, 2023, 51(11): 68-73 DOI:10.19817/j.cnki.issn1006-3536.2023.11.010

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参考文献

[1] Ali A,Jamil M I,Jiang J,et al.An overview of controlled-biocide-release coating based on polymer resin for marine antifouling applications[J].Journal of Polymer Research,2020,27(4):1-17.
[2] Qian P Y,Xu Y,Fusetani N.Natural products as antifouling compounds:recent progress and future perspectives[J].Biofouling,2009,26(2):223-234.
[3] Chen L,Duan Y,Cui M,et al.Biomimetic surface coatings for marine antifouling:natural antifoulants,synthetic polymers and surface microtopography[J].Science of the Total Environment,2021,766:144469.
[4] Zhang B,Xu W,Zhu Q,et al.Lotus-inspired multiscale superhydrophobic AA5083 resisting surface contamination and marine corrosion attack[J].Materials,2019,12(10):1592.
[5] Dimatteo R,Darling N J,Segura T.In situ forming injectable hydrogels for drug delivery and wound repair[J].Advanced Drug Delivery Reviews,2018,127:167-184.
[6] Yang W,Wang H T,Li T F,et al.X-Mechanics—an endless frontier[J].Science China Physics,Mechanics & Astronomy,2019,62(1):1-8.
[7] Jin H,Tian L,Bing W,et al.Bioinspired marine antifouling coatings:status,prospects,and future[J].Progress in Materials Science,2022,124:100889.
[8] Liu J,Qu S,Suo Z,et al.Functional hydrogel coatings[J].National Science Review,2021,8(2):254.
[9] Kim S,Gim T,Jeong Y,et al.Facile construction of robust multilayered PEG films on polydopamine-coated solid substrates for marine antifouling applications[J].ACS Applied Materials & Interfaces,2017,10(9):7626-7631.
[10] Cui X,Lee J J L,Chen W N.Eco-friendly and biodegradable cellulose hydrogels produced from low cost okara:towards non-toxic flexible electronics[J].Scientific Reports,2019,9(1):1-9.
[11] Shahkaramipour N,Tran T N,Ramanan S,et al.Membranes with surface-enhanced antifouling properties for water purification[J].Membranes,2017,7(1):13.
[12] San Keskin N O,Deniz F,Nazir H.Anti microbial corrosion properties of electrospun cellulose acetate nanofibers containing biogenic silver nanoparticles for copper coatings[J].RSC Advances,2020,10(65):39901-39908.
[13] Palantöken S,Bethke K,Zivanovic V,et al.Cellulose hydrogels physically crosslinked by glycine:synthesis,characterization,thermal and mechanical properties[J].Journal of Applied Polymer Science,2020,137(7):48380.
[14] Dharmalingam K,Bordoloi D,Kunnumakkara A B,et al.Pre-paration and characterization of cellulose-based nanocomposite hydrogel films containing CuO/Cu2O/Cu with antibacterial activity[J].Journal of Applied Polymer Science,2020,137(40):49216.
[15] Zhang X,Feng Y,Gao D,et al.Functionalization of cellulosic hydrogels with Cu2O@CuO nanospheres:toward antifouling applications[J].Carbohydrate Polymers,2022,282:119136.
[16] Wang Y,Feng Y,Zhang M,et al.A green strategy for prepa-ring durable underwater superoleophobic calcium alginate hydrogel coated-meshes for oil/water separation[J].International Journal of Biological Macromolecules,2019,136:13-19.
[17] Wang B,Wan Y,Zheng Y,et al.Alginate-based composites for environmental applications:a critical review[J].Critical Reviews in Environmental Science and Ttechnology,2019,49(4):318-356.
[18] Matsubayashi T,Tenjimbayashi M,Komine M,et al.Bioinspired hydrogel-coated mesh with superhydrophilicity and underwater superoleophobicity for efficient and ultrafast oil/water separation in harsh environments[J].Industrial & Engineering Chemistry Research,2017,56(24):7080-7085.
[19] Bauer S,Alles M,Arpa-Sancet M P,et al.Resistance of amphiphilic polysaccharides against marine fouling organisms[J].Biomacromolecules,2016,17(3):897-904.
[20] Liu Y,Nisisako T.Microfluidic encapsulation of hydrophobic antifouling biocides in calcium alginate hydrogels for controllable release[J].ACS Omega,2020,5(40):25695-25703.
[21] Seong B,Kim J,Jung S,et al.Shaping characteristics in alginate hydrogel encapsulation via a two-fluid spraying method[J].Journal of Coatings Technology and Research,2018,15(5):1157-1165.
[22] Yang J,Xu F,Han C R.Metal ion mediated cellulose nanofibrils transient network in covalently cross-linked hydrogels:mechanistic insight into morphology and dynamics[J].Biomacromolecules,2017,18(3):1019-1028.
[23] Zhang Q,Zhang C,Xu J,et al.Effect of poly (vinyl alcohol) coating process conditions on the properties and performance of polyamide reverse osmosis membranes[J].Desalination,2016,379:42-52.
[24] Ma W,Zhang P,Zhao B,et al.Swelling resistance and mechanical performance of physical crosslink-based poly (vinyl alcohol) hydrogel film with various molecular weight[J].Journal of Polymer Science Part B:Polymer Physics,2019,57(24):1673-1683.
[25] Wu L,Huang S,Zheng J,et al.Synthesis and characterization of biomass lignin-based PVA super-absorbent hydrogel[J].International Journal of Biological Macromolecules,2019,140:538-545.
[26] Xu S,Zhang P,Ma W,et al.High water resistance polyvinyl alcohol hydrogel film prepared by melting process combining with citric acid cross-linking[J].Polymer Science Series B,2022,64(2):198-208.
[27] 胡国锋,周建萍,梁红波,等.LED固化环氧丙烯酸酯/聚乙烯醇双网络水凝胶海洋防污涂料的研制[J].涂料工业,2021,51(10):11-17.
[28] Akther N,Ali S M,Phuntsho S,et al.Surface modification of thin-film composite forward osmosis membranes with polyvinyl alcohol-graphene oxide composite hydrogels for antifouling properties[J].Desalination,2020,491:114591.
[29] Zhu H W,Zhang J N,Su P,et al.Strong adhesion of poly (vinyl alcohol)-glycerol hydrogels onto metal substrates for marine antifouling applications[J].Soft Matter,2020,16(3):709-717.
[30] Ghani S M M,Rabat N E,Ramli R A,et al.Hydrophilic comonomer impact on poly (vinyl alcohol-co-methyl methacrylate) based hydrogel coating[J].Materials Today:Proceedings,2020,31:54-59.
[31] Feng H,Zhang J,Yang W,et al.Transparent janus hydrogel wet adhesive for underwater self-cleaning[J].ACS Applied Materials & Interfaces,2021,13(42):50505-50515.
[32] Ekblad T,Bergström G,Ederth T,et al.Poly (ethylene glycol)-containing hydrogel surfaces for antifouling applications in marine and freshwater environments[J].Biomacromolecules,2008,9(10):2775-2783.
[33] Lin B,Zhou S.Poly (ethylene glycol)-grafted silica nanoparticles for highly hydrophilic acrylic-based polyurethane coatings[J].Progress in Organic Coatings,2017,106:145-154.
[34] Zheng X,Hao Y,Zhang Z.Preparation methods of chemically cross-linked poly (ethylene glycol) hydrogels[J].Chem Propellants Polym Mater,2011,9:36-43.
[35] Zhang C,Zhang Z,Qi Y.Preparation,structure and properties of polystyrene-microsphere-reinforced PEG-based hydrogels[J].Polymers,2021,13(16):2605.
[36] Park J,Kim N,Jung K I,et al.Effect of silica nanoparticles blocked with epoxy groups on the crosslinking and surface properties of PEG hydrogel films[J].Polymers,2021,13(19):3296.
[37] Wanka R,Koschitzki F,Puzovic V,et al.Synthesis and characterization of dendritic and linear glycol methacrylates and their performance as marine antifouling coatings[J].ACS Applied Materials & Interfaces,2021,13(5):6659-6669.
[38] Shao Q,Jiang S.Molecular understanding and design of zwitterionic materials[J].Advanced Materials,2015,27(1):15-26.
[39] Leigh B L,Cheng E,Xu L,et al.Antifouling photograftable zwitterionic coatings on PDMS substrates[J].Langmuir,2018,35(5):1100-1110.
[40] Ningrum E O,Pratiwi E L,Shaffitri I L,et al.Developments on synthesis and applications of sulfobetaine derivatives:a brief review[J].Indonesian Journal of Chemistry,2021,21(5):1298-1315.
[41] Regev C,Jiang Z,Kasher R,et al.Critical surface density of zwitterionic polymer chains affect antifouling properties[J].Applied Surface Science,2022,596:153652.
[42] Shen J,Du M,Wu Z,et al.Strategy to construct polyzwitterionic hydrogel coating with antifouling,drag-reducing and weak swelling performance[J].RSC Advances,2019,9(4):2081-2091.
[43] Laghmari S,May P,Ulbricht M.Polyzwitterionic hydrogel coating for reverse osmosis membranes by concentration polarization-enhanced in situ “click” reaction that is applicable in modules[J].Journal of Membrane Science,2021,629:119274.
[44] Koc J,Schönemann E,Wanka R,et al.Effects of crosslink density in zwitterionic hydrogel coatings on their antifouling performance and susceptibility to silt uptake[J].Biofouling,2020,36(6):646-659.
[45] Zhang J,Bo S,Feng H,et al.Imparting strong antifouling properties to the transparent PVB coating through the zwitterionic compound condensation[J].Coatings,2021,11(10):1164.
[46] Tong Z,Guo H,Di Z,et al.Squid inspired elastomer marine coating with efficient antifouling strategies:hydrophilized defensive surface and lower modulus[J].Colloids and Surfaces B:Biointerfaces,2022,213:112392.
[47] Dong L,Dai S,He G,et al.Lipophilic monomer tackifying hydrogel antifouling coatings prepared by soap free emulsion polymerization and its performance[J].Progress in Organic Coatings,2022,165:106724.
[48] Zhang Z,Guo L,Hao J.Emulsion-based organohydrogels with switchable wettability and underwater adhesion toward durable and ecofriendly marine antifouling coatings[J].ACS Applied Polymer Materials,2021,3(6):3060-3070.
[49] Wen J,Song Z,Chen X,et al.Fabrication of porous aluminum coating by cored wire arc spray for anchoring antifouling hydrogel layer[J].Journal of Thermal Spray Technology,2021,31:119-129.
[50] Lu G,Tian S,Li J,et al.Fabrication of bio-based amphiphilic hydrogel coating with excellent antifouling and mechanical properties[J].Chemical Engineering Journal,2021,409:128134.
[51] Yang J,Xue B,Zhou Y,et al.Spray-painted hydrogel coating for marine antifouling[J].Advanced Materials Technologies,2021,6(3):2000911.
[52] Yao X,Liu J,Yang C,et al.Hydrogel paint[J].Advanced Materials,2019,31(39):1903062.
[53] Yin T,Lavoie S R,Qu S,et al.Photoinitiator-grafted polymer chains for integrating hydrogels with various materials[J].Cell Reports Physical Science,2021,2(6):100463.

基金资助

山东省重大科技创新工程项目(2022CXGC020401);现代海洋工程环保高性能防腐涂层材料关键技术攻关与产业化(2019JZZY010821)

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