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Laser structuring of open cell metal foams for micro scale surface enlargement

机译:用于微观尺度表面扩大的开放式电池金属泡沫的激光结构

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Nowadays, innovative materials have gained an increasing market share in several industrial fields. One of these novel materials are open cell metal foams. Those can be found in different industrial applications such as in batteries, implants or chemical filters, since high surface-to-volume ratios are needed. In the past, laser technology highlighted the solution for various challenges concerning the performance improvement of open cell metal foams. The performance of several of these properties can be further improved using laser-based fabrication methods allowing the production of repetitive periodic structures on the micrometer or sub-micrometer scale, such as Direct Laser Interference Pat-tering (DLIP). In this work, DLIP is utilized for structuring the surface of open cell steel foams. By controlling the laser parameters as well as the geometrical arrangement of the beams, 5.2 μm deep structures with a spatial period of 5.8 μm were fabricated. The topography of the used materials is characterized using scanning electron microscopy and confocal microscopy. Finally, the surface en-largement of the DLIP-structured foams are electrochemically characterized by determining the dou-ble-layer capacitance using cyclic voltammetry (CV) as well as electrochemical impedance spectros-copy (EIS).
机译:如今,创新材料在几个工业领域获得了市场份额的增加。其中一种新型材料是开放的细胞金属泡沫。这些可以在不同的工业应用中找到,例如在电池,植入物或化学过滤器中,因为需要高度的体积比率。在过去,激光技术突出了关于开放细胞金属泡沫的性能改善的各种挑战的解决方案。使用基于激光的制造方法可以进一步改善几种这些性能的性能,允许在千分尺或亚微米刻度上产生重复的周期性结构,例如直接激光干扰pat-tering(Dlip)。在这项工作中,DLIP用于构建开放式电池钢泡沫的表面。通过控制激光参数以及梁的几何布置,制造了5.2μm的空间周期的5.2μm深结构。使用的材料的形貌特征在于使用扫描电子显微镜和共聚焦显微镜检查。最后,通过使用循环伏安法(CV)以及电化学阻抗光谱(EIS)来确定DLIP结构泡沫的表面在电学表征的情况下电化学表征。

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