International Journal of Extreme Manufacturing, Volume. 7, Issue 1, 15004(2025)

Glass catfish inspired subaquatic abrasion-resistant anti-fouling window fabricated by femtosecond laser electrodeposition

Zhang Jialiang, Ren Fangzheng, Yang Qing, Ma Qingyun, Liang Jie, Meng Yizhao, Gou Xiaodan, Xia Chongxiao, and Chen Feng
References(40)

[1] [1] Guo F and Guo Z G 2016 Inspired smart materials with external stimuli responsive wettability: a review RSC Adv.6 36623–41

[2] [2] Epifanov E O, Tarkhov M A, Timofeeva E R, Trofimov I V, Asharchuk I M, Obydennov D V, Li W C, Gonchukov S A and Minaev N V 2021 Fabrication of micro-optical connectors for electro-optical sensor devices by a combined femtosecond laser system Laser Phys. Lett.18 036201

[3] [3] Holzner G, Du Y, Cao X B, Choo J, deMello A J and Stavrakis S 2018 An optofluidic system with integrated microlens arrays for parallel imaging flow cytometry Lab Chip18 3631–7

[4] [4] Samaha M A and Gad-el-hak M 2021 Slippery surfaces: a decade of progress Phys. Fluids33 071301

[5] [5] Chen F Z, Wang Y Q, Tian Y L, Zhang D W, Song J L, Crick C R, Carmalt C J, Parkin I P and Lu Y 2022 Robust and durable liquid-repellent surfaces Chem. Soc. Rev.51 8476–583

[6] [6] Wang W H, Li J W, Wang P, Ou J F and Zhang D 2022 Fabrication of polydimethylsiloxane-attached solid slippery surface with high underwater transparency towards the antifouling of optical window for marine instruments J. Colloid Interface Sci.623 832–44

[7] [7] Wu Q N, Yang C D, Su C, Zhong L Y, Zhou L F, Hang T, Lin H T, Chen W R, Li L X and Xie X 2020 Slippery liquid-attached surface for robust biofouling resistance ACS Biomater. Sci. Eng.6 358–66

[8] [8] Yuan S C, Zhang X G, Lin D, Xu F, Li Y and Wang H Y 2020 A novel slippery surface with enhanced stability and corrosion resistance Prog. Org. Coat.142 105563

[9] [9] Liang J, Shan C, Tian M D, Wang H, Hu T, Yang Q and Chen F 2024 Femtosecond laser constructed anti-pollution silica glass surfaces with high-viscosity-oil adhesion prevention Opt. Laser Technol.169 110090

[10] [10] Liang J, Wang H, Hu T, Shan C, Yang Q, Zhang C J, Yang T Z, Fang Z, Hou X and Chen F 2023 Mammalian cornea inspired anti-fogging silica glass surface achieved by femtosecond laser Adv. Opt. Mater.11 2202287

[11] [11] Li M J, Yang T Z, Yang Q, Fang Z, Bian H, Zhang C J, Hou X and Chen F 2022 Bioinspired anti-fogging and anti-fouling artificial compound eyes Adv. Opt. Mater.10 2200861

[12] [12] Howell C, Grinthal A, Sunny S, Aizenberg M and Aizenberg J 2018 Designing liquid-infused surfaces for medical applications: a review Adv. Mater.30 1802724

[13] [13] Manna U and Lynn D M 2015 Fabrication of liquid-infused surfaces using reactive polymer multilayers: principles for manipulating the behaviors and mobilities of aqueous fluids on slippery liquid interfaces Adv. Mater.27 3007–12

[14] [14] Yao X, Song Y L and Jiang L 2011 Applications of bio-inspired special wettable surfaces Adv. Mater.23 719–34

[15] [15] Zeng X, Guo Z G and Liu W M 2021 Recent advances in slippery liquid-infused surfaces with unique properties inspired by nature Bio-Des. Manuf.4 506–25

[16] [16] Jiao S Z, Ma D P, Cheng Z J and Meng J H 2023 Super-slippery poly(dimethylsiloxane) brush surfaces: from fabrication to practical application Chempluschem88 e202200379

[17] [17] Yong J L, Yang Q, Chen F and Hou X 2019 Femtosecond laser-induced superwetting surfaces Chin. Sci. Bull.64 1213–37

[18] [18] Yong J L, Yang Q, Huo J L, Hou X and Chen F 2021 Superwettability-based separation: from oil/water separation to polymer/water separation and bubble/water separation Nano Select.2 1580–8

[19] [19] Yong J L, Yang Q, Hou X and Chen F 2021 Underwater superpolymphobicity: concept, achievement, and applications Nano Select.2 1011–22

[20] [20] Wang S T, Liu K S, Yao X and Jiang L 2015 Bioinspired surfaces with superwettability: new insight on theory, design, and applications Chem. Rev.115 8230–93

[21] [21] Wang J S, Fang F Z, An H J, Wu S, Qi H M, Cai Y X and Guo G Y 2023 Laser machining fundamentals: micro, nano, atomic and close-to-atomic scales Int. J. Extrem. Manuf.5 012005

[22] [22] Shome A, Das A, Borbora A, Dhar M and Manna U 2022 Role of chemistry in bio-inspired liquid wettability Chem. Soc. Rev.51 5452–97

[23] [23] Yong J L, Yang Q, Hou X and Chen F 2022 Nature-inspired superwettability achieved by femtosecond lasers Ultrafast Sci.2022 9895418

[24] [24] Zhang Y X, Wu D, Zhang Y C, Bian Y C, Wang C W, Li J W, Chu J R and Hu Y L 2023 Femtosecond laser direct writing of functional stimulus-responsive structures and applications Int. J. Extrem. Manuf.5 042012

[25] [25] Liu Y H, He X Y, Yuan C Q, Cao P and Bai X Q 2024 Antifouling applications and fabrications of biomimetic micro-structured surfaces: a review J. Adv. Res.59 201–21

[26] [26] Zhang J L, Cheng Y, Yang Q, Liang J, Fang Z, Hou X and Chen F 2022 Research progress of femtosecond laser preparation of durable superhydrophobic surface and its application (Invited) Acta Photon. Sin.51 0751414

[27] [27] Lian Z X, Zhou J H, Ren W F, Chen F Z, Xu J K, Tian Y L and Yu H D 2024 Recent progress in bio-inspired macrostructure array materials with special wettability—from surface engineering to functional applications Int. J. Extrem. Manuf.6 012008

[28] [28] Wang D H et al 2020 Design of robust superhydrophobic surfaces Nature582 55–59

[29] [29] Zhang Y Y, Jiao Y L, Li C Z, Chen C, Li J W, Hu Y L, Wu D and Chu J R 2020 Bioinspired micro/nanostructured surfaces prepared by femtosecond laser direct writing for multi-functional applications Int. J. Extrem. Manuf.2 032002

[30] [30] Qi J, Chen Y, Zhang W T, Li L, Huang H D, Lin H, Zhong G J and Li Z M 2022 Imparting cellulose acetate films with hydrophobicity, high transparency, and self-cleaning function by constructing a slippery liquid-infused porous surface Ind. Eng. Chem. Res.61 7962–70

[31] [31] Maji K, Das A, Hirtz M and Manna U 2020 How does chemistry influence liquid wettability on liquid-infused porous surface? ACS Appl. Mater. Interfaces12 14531–41

[32] [32] Baidya A, Das S K and Pradeep T 2018 An aqueous composition for lubricant-free, robust, slippery, transparent coatings on diverse substrates Glob. Chall.2 1700097

[33] [33] Zheng W W, Huang J Y, Zang X R, Xu X F, Cai W L, Lin Z Q and Lai Y K 2022 Judicious design and rapid manufacturing of a flexible, mechanically resistant liquid-like coating with strong bonding and antifouling abilities Adv. Mater.34 2204581

[34] [34] Urata C, Dunderdale G J, England M W and Hozumi A 2015 Self-lubricating organogels (SLUGs) with exceptional syneresis-induced anti-sticking properties against viscous emulsions and ices J. Mater. Chem. A 3 12626–30

[35] [35] Urata C, Nagashima H, Hatton B D and Hozumi A 2021 Transparent organogel films showing extremely efficient and durable anti-icing performance ACS Appl. Mater. Interfaces13 28925–37

[36] [36] Do Park G, Hong C Y, Kim G H and Lee S J 2024 Super-slippery silicone-based gel coating with a regenerative oil layer for long-term prevention of surface contamination Prog. Org. Coat.192 108531

[37] [37] Do Park G, Jang H, Jeong H E and Lee S J 2023 Superslippery long-chain entangled polydimethylsiloxane gel with sustainable self-replenishment Adv. Eng. Mater.25 2201530

[38] [38] Cheng Y et al 2023 Heart valve-inspired self-lubricating anticoagulant surfaces Chem. Eng. J.474 145358

[39] [39] Fan X J, Zheng X Z, An T, Li X H, Leung N, Zhu B, Sui T, Shi N, Fan T X and Zhao Q B 2023 Light diffraction by sarcomeres produces iridescence in transmission in the transparent ghost catfish Proc. Natl Acad. Sci. USA120 e2219300120

[40] [40] Ng H H and Kottelat M 2013 After eighty years of misidentification, a name for the glass catfish (Teleostei: siluridae) Zootaxa3630 308–16

Tools

Get Citation

Copy Citation Text

Zhang Jialiang, Ren Fangzheng, Yang Qing, Ma Qingyun, Liang Jie, Meng Yizhao, Gou Xiaodan, Xia Chongxiao, Chen Feng. Glass catfish inspired subaquatic abrasion-resistant anti-fouling window fabricated by femtosecond laser electrodeposition[J]. International Journal of Extreme Manufacturing, 2025, 7(1): 15004

Download Citation

EndNote(RIS)BibTexPlain Text
Save article for my favorites
Paper Information

Category:

Received: May. 5, 2024

Accepted: Apr. 17, 2025

Published Online: Apr. 17, 2025

The Author Email:

DOI:10.1088/2631-7990/ad878d

Topics