4.8 Article

Robust Biomimetic-Structural Superhydrophobic Surface on Aluminum Alloy

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 7, 期 3, 页码 1449-1457

出版社

AMER CHEMICAL SOC
DOI: 10.1021/am505582j

关键词

superhydrophobic surface; biomimetic structure; aluminum alloy; hydrothermal method; durability

资金

  1. National Natural Science Foundation of China [21273293, 21373281]
  2. Natural Science Foundation of CQ [CSTC2011AB4056]
  3. Program for New Century Excellent Talents in University [NCET-12-0587, NCET-13-0633]
  4. Fundamental Research Funds for the Central Universities [CDJZR13225501, CDJZR14228801]
  5. Student Research Training Program (SRTP) of Chongqing University
  6. Chongqing University

向作者/读者索取更多资源

The following facile approach has been developed to prepare a biomimetic-structural superhydrophobic surface with high stabilities and strong resistances on 2024 Al alloy that are robust to harsh environments. First, a simple hydrothermal treatment in a La(NO3)(3) aqueous solution was used to fabricate ginkgo-leaf like nanostructures, resulting in a superhydrophilic surface on 2024 Al. Then a low-surface-energy compound, dodecafluoroheptyl-propyl-trimethoxylsilane (Actyflon-G502), was used to modify the superhydrophilic 2024 Al, changing the surface character from superhydrophilicity to superhydrophobicity. The water contact angle (WCA) of such a superhydrophobic surface reaches up to 160 degrees, demonstrating excellent superhydrophobicity. Moreover, the as-prepared superhydrophobic surface shows high stabilities in air-storage, chemical and thermal environments, and has strong resistances to UV irradiation, corrosion, and abrasion. The WCAs of such a surface almost remain unchanged (160 degrees) after storage in air for 80 days, exposure in 250 degrees C atmosphere for 24 h, and being exposed under UV irradiation for 24 h, are more than 144 degrees whether in acidic or alkali medium, and are more than 150 degrees after 48 h corrosion and after abrasion under 0.98 kPa for 1000 mm length. The remarkable durability of the as-prepared superhydrophobic surface can be attributed to its stable structure and composition, which are due to the existence of lanthanum (hydr)oxides in surface layer. The robustness of the as-prepared superhydrophobic surface to harsh environments will open their much wider applications. The fabricating approach for such robust superhydrophobic surface can be easily extended to other metals and alloys.

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