4.6 Article

Stretchable dual cross-linked silicon elastomer with a superhydrophobic surface and fast triple self-healing ability at room temperature

期刊

SOFT MATTER
卷 17, 期 17, 页码 4643-4652

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d0sm02175j

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资金

  1. Longshan Academic Talent Research Supporting Program of Southwest University of Science and Technology [18LZXT02]
  2. Sichuan Science and Technology Program [2020YJ0333]
  3. Academic Team Project of state Key Laboratory of Environmental-friendly Energy Materials [17fksy0102]

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The study successfully fabricated a superhydrophobic elastomer with a dual-layered structure, demonstrating good self-healing efficiency and superhydrophobic properties, along with fast self-healing and recovery abilities, making it a highly durable material.
Stretchable elastomers with superhydrophobic surfaces have potential applications in wearable electronics. However, various types of damage inevitably occur on these elastomers in actual application, resulting in the deterioration of the superhydrophobic properties. In this work, superhydrophobic elastomers (HB-imine-BZn-PDMS), was fabricated by employing a dual-layered structure. The bottom layer was a silicon elastomer (imine-BZn-PDMS) with an imine/coordination dual cross-linked structure and room temperature self-healing efficiency of 94%. The top layer was imine-BZn-PDMS/silica nanocomposites to provide superhydrophobic properties. The HB-imine-BZn-PDMS elastomer exhibited fast triple self-healing ability at room temperature toward surface oxidation/decomposition, ruptures, or pinholes, and high durability under abrasion and stretching. The dual dynamic bonds of imine-BZn-PDMS enabled fast recovery of superhydrophobicity in 20 min at room temperature via bond exchange, after generating pinholes across the elastomer. Following surface chemical damage, the HB-imine-BZn-PDMS elastomer also exhibited fast (40 min) room-temperature self-healing ability, which is superior to that of most current self-healing superhydrophobic materials.

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