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首页> 外文期刊>Journal of Sol-Gel Science and Technology >A robust, flexible superhydrophobic sheet fabricated by in situ growth of micro-nano-SiO2 particles from cured silicone rubber
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A robust, flexible superhydrophobic sheet fabricated by in situ growth of micro-nano-SiO2 particles from cured silicone rubber

机译:通过来自固化的硅橡胶的微纳米SiO 2颗粒的原位生长制造一种稳健的柔性超疏水板

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摘要

Here, we report a multifunctional superhydrophobic material achieved through the in situ growth of micro-nano-SiO2 particles from the surface of a preswollen silicone rubber sheet by sol-gel methods. The contact angles of the sheets reached 162 degrees. The scanning electron microscopy (SEM) photographs showed that 0.8-1m SiO2 microspheres grew in situ on the surface of the silicone rubber sheets. The microspheres had 30-70nm nanoscale bulges on their surfaces that formed micro-nano-structures, like a lotus leaf. The sizes of the micro-SiO2 particles and nanobulges were both controllable. The superhydrophobic sheets showed excellent water repellency and self-cleaning performance and exhibited satisfactory durability against mechanical abrasion, rubbing, bending, and long-term underwater storage. The mechanical robustness was attributed to a thick micro-nano-SiO2 layer formed on the surface instead of a monolayer hydrophobic coating. The superhydrophobic rubber sheets were not fluorinated, demonstrated robustness and elasticity, were easy to prepare, and were expected to provide unique advantages for a wide range of applications in biomedicine, energy and electronic devices.
机译:在这里,我们通过溶胶 - 凝胶方法通过溶胶 - 凝胶方法从Preswollen硅橡胶片的表面原位生长来报告多官能的超疏水材料。片材的接触角达到162度。扫描电子显微镜(SEM)照片显示0.8-1M SiO 2微球在硅橡胶板表面上原位成立。微球在其表面上具有30-70nm纳米级凸起,其形成微纳米结构,如莲花叶。微型SiO 2颗粒和纳米轴的尺寸均可控制。超疏水板呈现出优异的防水性和自清洁性能,并呈现出令人满意的耐用性,防止机械磨损,摩擦,弯曲和长期水下储存。机械稳健性归因于在表面上形成的厚微纳米SiO 2层而不是单层疏水涂层。超疏水橡胶板不氟化,易于制备稳健性和弹性,预计为生物医学,能源和电子设备的各种应用提供独特的优势。

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