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首页> 外文期刊>Advanced materials interfaces >Superhydrophobic Vertically Aligned Carbon Nanotubes for Biomimetic Air Retention under Water (Salvinia Effect)
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Superhydrophobic Vertically Aligned Carbon Nanotubes for Biomimetic Air Retention under Water (Salvinia Effect)

机译:用于水下的仿生空气潴留的超疏水垂直对准碳纳米管(Salvinia效应)

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The Salvinia effect refers to the stable retention of an air layer when submerged in water and is a result of complex hierarchical structuring, ultimate example of which is the surface of the floating fern Salvinia molesta. The air retention capability is technologically interesting as the retained air layer reduces drag force, prevents biofouling, and serves sensory functions. Air retention on artificial materials is currently limited to very few materials and is often a result of micrometer sized surface structures obtained by complex lithography techniques. In the present work, the air retention capabilities of superhydrophobic vertically aligned carbon nanotubes (VACNTs) are explored for the first time and the retained air layer is characterized by atomic force microscopy and confocal microscopy techniques. While the as-prepared VACNTs retained only small pockets of air when submerged in water, superhydrophobic and regrown VACNT structures are found to be capable of retaining a continuous thick layer over extended period of time. The stable air retention capabilities of these nanostructured VACNT surfaces hold promising pathways for the development of biomimetic sensor systems.
机译:Salvinia效应是指在水中浸没在水中时稳定的空气层保留,并且是复数构造的结果,其终极例子是浮动蕨熟糖摩尔塔的表面。随着保留的空气层减少阻力,防止空气保持能力是技术性的有趣,防止生物污染,并提供感觉函数。人造材料的空气留量目前限于极少的材料,并且通常是通过复合光刻技术获得的微米尺寸的表面结构的结果。在本作工作中,首次探索超疏水性垂直取向碳纳米管(VACNT)的空气保留能力,并且保留的空气层的特征在于原子力显微镜和共聚焦显微镜技术。虽然当浸没在水中时,所准备的空气仅保留小的空气,但发现超疏水和再生Vacnt结构能够在延长的一段时间内保持连续厚的层。这些纳米结构VACNT表面的稳定空气保持能力保持了用于仿生传感器系统的开发的有望的途径。

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