Stable superhydrophobic surface of hierarchical carbon nanotubes on Si micropillar arrays

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Abstract

It is of great importance to construct a stable superhydrophobic surface with low sliding angle (SA) for various applications. We used hydrophobic carbon nanotubes (CNTs) to construct the superhydrophobic hierarchical architecture of CNTs on silicon micropillar array (CNTs/Si-μp), which have a large contact angle of 153° to 155° and an ultralow SA of 3° to 5°. Small water droplets with a volume larger than 0.3 μL can slide on the CNTs/Si-μp with a tilted angle of approximately 5°. The CNTs growing on planar Si wafer lose their superhydrophobic properties after exposing to tiny water droplets. However, the CNTs/Si-μp still show superhydrophobic properties even after wetting using tiny water droplets. The CNTs/Si-μp still have a hierarchical structure after wetting, resulting in a stable superhydrophobic surface. © 2013 He et al.

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APA

He, S., Wei, J., Wang, H., Sun, D., Yao, Z., Fu, C., … Wu, D. (2013). Stable superhydrophobic surface of hierarchical carbon nanotubes on Si micropillar arrays. Nanoscale Research Letters, 8(1), 1–6. https://doi.org/10.1186/1556-276X-8-412

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