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Optimization of the replica molding process of PDMS using pennate diatoms

机译:使用戊二酸硅藻优化PDMS的复制品成型工艺

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Biomimetic fabrication of nanostructured materials has recently attracted the attention of researchers as a cost-effective and easily applicable method of nanotexturing. Different techniques and materials have been used in order to replicate natural patterns, among which polydimethylsiloxane (PDMS Sylgard 184) was recently used to replicate the micro- and nanoscale patterns from centric diatoms. In this paper, we test the reproducibility and precision of this approach using various morphologically different diatom species trying to optimize the molding parameters. The optimization process is focused on immobilization of diatoms on the glass support, which serves as a master for templating, as well as on the parameters of PDMS fabrication such as the ratio of the curing agent and elastomer, use of vacuum, curing time and temperature. The results indicate that higher ratios of curing agent and elastomer, longer curing time and lower temperature are the most favorable conditions to obtain negative diatom replicas of good quality with features of 50 nm. Although this method can give very precise results producing high-resolution molds with all micro- and nanostructures replicated, we revealed some limitations regarding the size and morphology of the species used. These results indicate that large round and flat diatom species seem to be more suitable for the cast molding.
机译:纳米结构材料的仿生制造作为一种经济高效且易于应用的纳米纹理化方法最近已引起研究人员的关注。为了复制自然图案,已使用了不同的技术和材料,其中最近使用聚二甲基硅氧烷(PDMS Sylgard 184)复制中心硅藻的微米和纳米级图案。在本文中,我们尝试使用各种形态不同的硅藻来测试该方法的可重复性和精度,以优化成型参数。优化过程的重点是将硅藻固定在玻璃模板上,作为模板的母版,以及PDMS制造的参数,例如固化剂和弹性体的比例,真空的使用,固化时间和温度。结果表明,较高的固化剂和弹性体比率,较长的固化时间和较低的温度是获得具有50 nm特征的高质量负硅藻仿品的最有利条件。尽管此方法可以产生非常精确的结果,可生产出具有复制的所有微结构和纳米结构的高分辨率模具,但我们揭示了有关所用物种的大小和形态的一些限制。这些结果表明,大的圆形和扁平的硅藻物种似乎更适合铸造。

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