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AMROBS: All-Metal Replicas of Biological Surfaces—A Novel Approach Combining Established Techniques

机译:AMROBS:生物表面的全金属复制品—结合既有技术的一种新方法

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摘要

Biomimetic work often concerns to biological surfaces and their interaction with the environment. Liquid handling, barrier function and protection against heat, pathogens and predators, to name just a few, require biological surfaces to exhibit specific material properties—properties that often are not suited for specific measurements under lab conditions. In particular, the lack of the necessary sample toughness or conductivity can prove difficult to perform certain experiments. Hence, we present a novel approach to achieve all-metal replicas from biological surfaces (AMROBS). Resulting replicas exhibit microscale accurate replication of morphological topography while providing tough, conductive subjects for investigation and easy chemical surface modification. Combining established techniques like polymer casting (e.g., silicone), chemical silver precipitation and electroplating, all-metal replicas of several technical and biological surfaces (e.g., diffraction foils, lizard skin, flat bug surface) were produced and compared to their original counterparts with regard to morphology and functionality. By using scanning electron microscopy and video analysis, we show that a high degree of replication accuracy is achievable, and conclude the future possibilities of AMROBS in a comprehensive discussion, including the general “do’s” and “do nots” of metal replication following this approach.
机译:仿生工作通常涉及生物表面及其与环境的相互作用。仅举几例,液体处理,屏障功能和耐热,病原体和食肉动物的防护要求生物表面表现出特定的材料特性,这些特性通常不适合在实验室条件下进行特定的测量。特别是,缺乏必要的样品韧性或电导率可能会证明难以执行某些实验。因此,我们提出了一种从生物表面(AMROBS)实现全金属复制品的新颖方法。所得的复制品展现出微观形貌的形态学精确复制,同时为研究提供坚硬而导电的主题,并易于化学表面改性。结合已建立的技术,例如聚合物浇铸(例如硅树脂),化学银沉淀和电镀,生产了多个技术和生物表面(例如衍射箔,蜥蜴皮,平坦的虫子表面)的全金属复制品,并将其与原始复制品进行了比较。关于形态和功能。通过使用扫描电子显微镜和视频分析,我们表明可以实现高度的复制准确性,并在全面讨论中总结了AMROBS的未来可能性,包括采用这种方法进行金属复制的一般“可做”和“不可做” 。

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