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用于海事应用的超疏水材料开发的最新进展

Recent Advances in Superhydrophobic Materials Development for Maritime Applications.

作者信息

Tang Zhao Qing, Tian Tongfei, Molino Paul J, Skvortsov Alex, Ruan Dong, Ding Jie, Li Yali

机构信息

Centre for Smart Infrastructure and Digital Construction, School of Engineering, Swinburne University of Technology, Hawthorn, VIC, 3122, Australia.

School of Science, Technology and Engineering, University of the Sunshine Coast, Sippy Downs, QLD, 4556, Australia.

出版信息

Adv Sci (Weinh). 2024 Apr;11(16):e2308152. doi: 10.1002/advs.202308152. Epub 2024 Feb 25.

Abstract

Underwater superhydrophobic surfaces stand as a promising frontier in materials science, holding immense potential for applications in underwater infrastructure, vehicles, pipelines, robots, and sensors. Despite this potential, widespread commercial adoption of these surfaces faces limitations, primarily rooted in challenges related to material durability and the stability of the air plastron during prolonged submersion. Factors such as pressure, flow, and temperature further complicate the operational viability of underwater superhydrophobic technology. This comprehensive review navigates the evolving landscape of underwater superhydrophobic technology, providing a deep dive into the introduction, advancements, and innovations in design, fabrication, and testing techniques. Recent breakthroughs in nanotechnology, magnetic-responsive coatings, additive manufacturing, and machine learning are highlighted, showcasing the diverse avenues of progress. Notable research endeavors concentrate on enhancing the longevity of plastrons, the fundamental element governing superhydrophobic behavior. The review explores the multifaceted applications of superhydrophobic coatings in the underwater environment, encompassing areas such as drag reduction, anti-biofouling, and corrosion resistance. A critical examination of commercial offerings in the superhydrophobic coating landscape offers a current perspective on available solutions. In conclusion, the review provides valuable insights and forward-looking recommendations to propel the field of underwater superhydrophobicity toward new dimensions of innovation and practical utility.

摘要

水下超疏水表面是材料科学中一个充满前景的前沿领域,在水下基础设施、车辆、管道、机器人和传感器等方面有着巨大的应用潜力。尽管有此潜力,但这些表面在商业上的广泛应用仍面临限制,主要源于与材料耐久性以及长时间浸没期间气膜稳定性相关的挑战。压力、水流和温度等因素进一步使水下超疏水技术的运行可行性变得复杂。这篇综述全面探讨了水下超疏水技术不断演变的情况,深入介绍了其设计、制造和测试技术方面的进展与创新。重点介绍了纳米技术、磁响应涂层、增材制造和机器学习方面的最新突破,展示了多样的进展途径。显著的研究工作集中在提高气膜的寿命上,气膜是控制超疏水行为的基本要素。该综述探讨了超疏水涂层在水下环境中的多方面应用,包括减阻、防生物污损和耐腐蚀等领域。对超疏水涂层领域商业产品的批判性审视提供了现有解决方案的当前视角。总之,该综述提供了有价值的见解和前瞻性建议,以推动水下超疏水性领域迈向创新和实际应用的新维度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a1e/11040384/4ab2e5318dd0/ADVS-11-2308152-g013.jpg

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