Liang Hengfei, Kuang Qi, Hu Chengyao, Chen Jun, Lu Xiaohui, Huang Yawen, Yan Hui
State Key Laboratory of Environmental-friendly Energy Materials, Southwest University of Science and Technology, Mianyang 621010, China.
School of Material Science and Engineering, Southwest University of Science and Technology, Mianyang, Sichuan 621010, China.
Soft Matter. 2022 Nov 9;18(43):8238-8250. doi: 10.1039/d2sm01106a.
The fragility of the micro-nano structure makes superhydrophobic coatings highly susceptible to stress, resulting in a decrease in their superhydrophobic and anti-icing performance. In this work, we proposed a new insight to improve durability by incorporating a thin layer of self-healable elastomer with a dynamic network on the micro-nano structure. We constructed superhydrophobic coatings (EP/SiO/BFVSE) with a three-layered structure of the epoxy resin/silica nanoparticle/silicon elastomer. The silicon elastomer (BFVES) with a B-O dynamic cross-linked network and fluorinated moieties was synthesized by graft polymerization on vinyl silicon oil. The preparation route is facile and convenient for mass production. BFVES has rapid self-healing properties for scratches at room-temperature, underwater and at -18 °C. EP/SiO/BFVSE preserved apparently higher CAs after being immersed in pH = 1, pH = 13, and NaCl solutions for 96 h as compared with the EP/SiO coating. In a water striking environment, the CA of EP/SiO/BFVSE was slightly decreased to 153°. SEM images further reveal that the recovery of superhydrophobicity and icephobicity is attributed to the self-healing behavior of the boroxine-containing silicon elastomer. The EP/SiO/BFVSE coating also possesses additional self-healing ability under chemical oxidation. The high durability of the self-healable superhydrophobic coating enables great application potential in aircraft, marine vessels, and outdoor facilities in harsh environments.
微纳结构的脆弱性使得超疏水涂层极易受到应力影响,导致其超疏水和防冰性能下降。在这项工作中,我们提出了一种新的见解,即通过在微纳结构上引入一层具有动态网络的自愈合弹性体来提高耐久性。我们构建了具有环氧树脂/二氧化硅纳米颗粒/硅弹性体三层结构的超疏水涂层(EP/SiO/BFVSE)。通过在乙烯基硅油上进行接枝聚合反应,合成了具有B-O动态交联网络和氟化基团的硅弹性体(BFVES)。该制备路线简便易行,便于大规模生产。BFVES在室温、水下和-18°C下对划痕具有快速自愈合性能。与EP/SiO涂层相比,EP/SiO/BFVSE在pH = 1、pH = 13和NaCl溶液中浸泡96小时后,其接触角明显更高。在水冲击环境中,EP/SiO/BFVSE的接触角略有下降至153°。扫描电子显微镜图像进一步表明,超疏水性和疏冰性的恢复归因于含硼氧烷的硅弹性体的自愈合行为。EP/SiO/BFVSE涂层在化学氧化作用下还具有额外的自愈合能力。这种自愈合超疏水涂层的高耐久性使其在飞机、船舶和恶劣环境中的户外设施中具有巨大的应用潜力。