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Mass-producible replication of highly hydrophobic surfaces from plant leaves

机译:可大量复制植物叶片中高度疏水的表面

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摘要

Many plant leaves found in nature are known to exhibit a characteristic of superhydrophobicity ('lotus leaf effect'). The present study proposes a mass-production method of highly hydrophobic surfaces by simply replicating the highly hydrophobic plant leaf surfaces in two steps: the first step of making a nickel mould via electroforming and the second step of replication via a UV-nanoimprint lithography. Making a nickel mould, either a plant leaf or its negative polymer replica is used as a mandrel in electroforming, and final products become positive or negative polymer replicas of a plant leaf, respectively. It is found that the nickel-mould making using the plant leaf as a mandrel is quite successful and the final products in the form of a positive replica are better than those in the form of a negative replica in terms of replication quality and hydrophobicity. Contact angle values of the positive replicas are less than those of the natural leaves' surfaces by only 2 degrees-5 degrees.
机译:已知自然界中发现的许多植物叶片都表现出超疏水性(“荷叶效应”)。本研究提出了一种高疏水性表面的批量生产方法,该方法可通过两个步骤简单地复制高疏水性植物叶片表面:第一步是通过电铸制作镍模具,第二步是通过UV-纳米压印光刻技术进行复制。制造镍模具时,可以将植物叶片或其负聚合物复制品用作电铸中的芯棒,最终产品分别成为植物叶片的正或负聚合物复制品。发现使用植物叶片作为心轴的镍模制造是相当成功的,就复制质量和疏水性而言,正复制品形式的最终产品优于负复制品形式的最终产品。正复制品的接触角值仅比天然树叶表面的接触角小2度至5度。

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