Journal of Bionic Engineering ›› 2024, Vol. 21 ›› Issue (1): 74-83.doi: 10.1007/s42235-023-00451-w
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Wenqiang Xing1 · Yiping Tang1 · Fengzhou Zhao1 · Lichun Zhang1 · Dengying Zhang1
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Abstract: In this paper, inspired by lotus leaf surfaces, we fabricated biomimetic multi-scale micro-nano-structures by Two-Step Capillary Force Lithography (TS-CFL) and UV-assisted Capillary Force Lithography (UV-CFL). The experimental results indicated that TS-CFL was unfitted to fabricate large-area multi-scale micro-nano-structures. Conversely, UV-CFL can fabricate large-area multi-scale micro-nano-structures. We discussed the hydrophobic and anti-icing properties of the biomimetic surfaces fabricated by these two technologies. We found that small structures are significant for improving the hydrophobic anti-icing properties of single-structured or structureless surfaces. We believe that these results can complement the experimental details of both technologies and enable the development of more interesting micro-nano-structures biomimetic surfaces by both technologies in the future.
Key words: Capillary force lithography , · Biomimetic lotus leaf , · Multi-scale structures , · Hydrophobic , · Anti-icing
Wenqiang Xing, Yiping Tang, Fengzhou Zhao, Lichun Zhang & Dengying Zhang . Fabrication of Biomimetic Surface for Hydrophobic and Anti‑icing Purposes via the Capillary Force Lithography[J].Journal of Bionic Engineering, 2024, 21(1): 74-83.
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URL: http://jbe.jlu.edu.cn/EN/10.1007/s42235-023-00451-w
http://jbe.jlu.edu.cn/EN/Y2024/V21/I1/74
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