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On the conversion of point-to-linear hierarchical micro/nano-structures on the glassy carbon surface by nanosecond pulsed laser irradiation
C. Wang; H. Y. Zhang; H. Huang; Z. Y. Zhang; L. Zhang and J. W. Yan
2022
发表期刊Applied Surface Science
ISSN0169-4332
卷号599页码:10
摘要Fabrication of microstructures on the glassy carbon (GC) surface is crucial for its functional applications. However, due to its intrinsic mechanical, physical, and chemical properties, it is still challenging to fabricate hierarchical micro/nano-structures on the GC surface. In this study, by tuning the interval between adjacent points as well as the irradiation time, the conversion from the point to linear hierarchical micro/nano-structures was successfully achieved on the GC surface by nanosecond pulsed laser irradiation. The detailed conversion process and mechanism were explored and discussed. On this basis, the linear hierarchical micro/nano-structures were fabricated by direct line scanning, and the internal nanostructures were always parallel to the laser scanning direction. By repeated line scanning with relatively low laser fluence, the method of direct line scanning was further improved, and well-defined and uniform hierarchical micro/nano-structures were fabricated.
DOI10.1016/j.apsusc.2022.153978
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收录类别sci ; ei
语种英语
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/66931
专题中国科学院长春光学精密机械与物理研究所
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C. Wang,H. Y. Zhang,H. Huang,et al. On the conversion of point-to-linear hierarchical micro/nano-structures on the glassy carbon surface by nanosecond pulsed laser irradiation[J]. Applied Surface Science,2022,599:10.
APA C. Wang,H. Y. Zhang,H. Huang,Z. Y. Zhang,&L. Zhang and J. W. Yan.(2022).On the conversion of point-to-linear hierarchical micro/nano-structures on the glassy carbon surface by nanosecond pulsed laser irradiation.Applied Surface Science,599,10.
MLA C. Wang,et al."On the conversion of point-to-linear hierarchical micro/nano-structures on the glassy carbon surface by nanosecond pulsed laser irradiation".Applied Surface Science 599(2022):10.
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