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Laser Interference Micro- and Nanofabrication of Water Repellent Structures on Stent Surfaces

机译:在支架表面上的激光干扰微型和纳米制造疏水结构

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摘要

In order to solve the long-term restenosis and the late stent thrombosis, which usually occurs after coronary stent implantation, stent surfaces were directly modified by laser interference lithography and the highly ordered concave structures were fabricated. The morphology and contact angle of the microstructure were measured with scanning electron microscopy and contact angle system. The water repellent property of the stent was also evaluated by the method of contacting the water drop with the stent and then separating. The results show that the close-packed concave structure with the period of 12.194 mu m can be fabricated on the stent surface under special parameters (incident angles of 3.0 degrees, laser energy density of 2 J/cm(2), exposure time of 90 seconds) by the three beam laser interference of 1064 nm and the form structure has good water repellency with contact angle of 120.5 degrees.
机译:为了解决长期再狭窄和晚期支架血栓形成,通常发生在冠状动脉支架植入后,通过激光干扰光刻直接改变支架表面,并制造高度有序的凹形结构。 用扫描电子显微镜和接触角系统测量微观结构的形态和接触角。 还通过将水滴与支架接触然后分离的方法来评估支架的防水性。 结果表明,在特殊参数(入射角为3.0度,激光能量密度为2J / cm(2),曝光时间为90时,可以在支架表面上制造紧密填充的凹面结构。 秒)通过1064nm的三个光束激光干扰,并且形状结构具有良好的防水性,接触角为120.5度。

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