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Femtosecond laser rapid fabrication of large-area rose-like micropatterns on freestanding flexible graphene films

机译:飞秒激光在独立的柔性石墨烯薄膜上快速制备大面积玫瑰状微图案

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摘要

We developed a simple, scalable and high-throughput method for fabrication of large-area three-dimensional rose-like microflowers with controlled size, shape and density on graphene films by femtosecond laser micromachining. The novel biomimetic microflower that composed of numerous turnup graphene nanoflakes can be fabricated by only a single femtosecond laser pulse, which is efficient enough for large-area patterning. The graphene films were composed of layer-by-layer graphene nanosheets separated by nanogaps (~10–50 nm), and graphene monolayers with an interlayer spacing of ~0.37 nm constituted each of the graphene nanosheets. This unique hierarchical layering structure of graphene films provides great possibilities for generation of tensile stress during femtosecond laser ablation to roll up the nanoflakes, which contributes to the formation of microflowers. By a simple scanning technique, patterned surfaces with controllable densities of flower patterns were obtained, which can exhibit adhesive superhydrophobicity. More importantly, this technique enables fabrication of the large-area patterned surfaces at centimeter scales in a simple and efficient way. This study not only presents new insights of ultrafast laser processing of novel graphene-based materials but also shows great promise of designing new materials combined with ultrafast laser surface patterning for future applications in functional coatings, sensors, actuators and microfluidics.
机译:我们开发了一种简单,可扩展且高通量的方法,用于通过飞秒激光微加工在石墨烯薄膜上制造尺寸,形状和密度受控的大面积三维玫瑰状微花。可以通过仅一个飞秒激光脉冲来制造由许多翻转石墨烯纳米薄片组成的新型仿生微型花,这种花足够有效地进行大面积构图。石墨烯薄膜是由逐层间隙(约10-50 nm)隔开的逐层石墨烯纳米片组成的,层间间距约为0.37 nm的石墨烯单层构成了每个石墨烯纳米片。石墨烯薄膜的这种独特的分层结构为飞秒激光烧蚀卷起纳米薄片时产生张应力提供了极大的可能性,这有助于形成微花。通过简单的扫描技术,可获得具有可控制的花朵图案密度的图案化表面,该图案化表面可表现出超疏水的粘合性。更重要的是,该技术使得能够以简单有效的方式在厘米尺度上制造大面积的图案化表面。这项研究不仅提供了对基于石墨烯的新型材料进行超快激光加工的新见解,而且还展示了结合超快激光表面图案设计新材料以用于功能性涂层,传感器,致动器和微流体的未来应用的巨大前景。

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