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首页> 外文期刊>Applied Surface Science >Morphology control of nanostructure using microsphere-assisted femtosecond laser double-pulse ablation and chemical etching
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Morphology control of nanostructure using microsphere-assisted femtosecond laser double-pulse ablation and chemical etching

机译:微球辅助飞秒激光双脉冲烧蚀和化学刻蚀控制纳米结构的形貌

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摘要

In this study, a microsphere-assisted femtosecond (fs) laser temporal shaping fabrication method was proposed. Different from two-dimensional (2D) microanohole pattern, three-dimensional (3D) hexagonal ring-like array can be obtained by microsphere-assisted fs laser double-pulse temporal pulse shaping and chemical etching. The fused silica substrate with polystyrene (PS) microsphere mask was ablated firstly by fs laser and then etched by KOH solution. During laser irradiation, PS microspheres with a diameter of 1 mu m were ionized through two-photon absorption and disturbed propagation of fs laser. Concave hexagonal array was ablated because of metal-like mask screening effect of PS microspheres, whose nanowire width can be decreased to 30 nm. The ionization process inside PS microspheres can be controlled using double pulses with different pulse delays. Because of lower absorption and reflection of PS mask under double-pulse irradiation, more laser fluence can transmit into fused silica substrate. Therefore, a uniform hexagonal ring-like array was formed under double pulses after chemical etching, which cannot be obtained through traditional single pulse irradiation. The thickness of hexagonal rings can be controlled by adjusting etching time. The hexagonal ring-like array obtained under double-pulse irradiation can be applied in lubricant reservoir, drug delivery, particle trapping and surface-enhanced Raman scattering (SERS).
机译:在这项研究中,提出了一种微球辅助飞秒(fs)激光时间整形制造方法。与二维(2D)微/纳米孔图案不同,可以通过微球辅助fs激光双脉冲时间脉冲整形和化学蚀刻获得三维(3D)六边形环状阵列。首先用fs激光烧蚀带有聚苯乙烯(PS)微球面罩的熔融石英基板,然后用KOH溶液蚀刻。在激光辐照过程中,直径为1μm的PS微球通过双光子吸收和fs激光的受干扰传播而被电离。凹面六角形阵列由于PS微球的金属样掩膜屏蔽效应而被烧蚀,其纳米线宽度可以减小到30 nm。 PS微球内部的电离过程可以使用具有不同脉冲延迟的双脉冲来控制。由于双脉冲辐射下PS掩模的吸收和反射较低,因此更多的激光通量可以透射到熔融石英基板中。因此,在化学蚀刻后的双脉冲下形成均匀的六边形环状阵列,这是传统的单脉冲辐射无法获得的。六角环的厚度可以通过调整蚀刻时间来控制。在双脉冲辐射下获得的六边形环状阵列可以应用于润滑剂储存,药物输送,颗粒捕集和表面增强拉曼散射(SERS)。

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