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Evaporation and condensation on two-tier superhydrophobic surfaces

Publication ,  Journal Article
Chen, CH; Cai, Q; Chen, CL
Published in: 2008 Proceedings of the ASME Micro Nanoscale Heat Transfer International Conference Mnht 2008
August 20, 2008

Superhydrophobic surfaces exhibit large contact angle and small hysteresis which promote liquid transport and enhance heat transfer. Here, liquid-vapor phase change behavior is reported on superhydrophobic surfaces with short carbon nanotubes deposited on micromachined posts, a two-tier texture mimicking the surface structure of lotus leaves. Compared to one-tier microtexture which energetically favors the Wenzel state, the two-tier texture with nanoscale roughness favors the Cassie state, the desired superhydrophobic state. During droplet evaporation, the two-tier texture delays the transition from Cassie to Wenzel state. Using two-tier texture with hexadeconethiol coating, continuous dropwise condensation was demonstrated for the first time on engineered superhydrophobic surfaces. © 2008 by ASME.

Duke Scholars

Published In

2008 Proceedings of the ASME Micro Nanoscale Heat Transfer International Conference Mnht 2008

DOI

Publication Date

August 20, 2008

Volume

PART B

Start / End Page

1021 / 1022
 

Citation

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MLA
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Chen, C. H., Cai, Q., & Chen, C. L. (2008). Evaporation and condensation on two-tier superhydrophobic surfaces. 2008 Proceedings of the ASME Micro Nanoscale Heat Transfer International Conference Mnht 2008, PART B, 1021–1022. https://doi.org/10.1115/MNHT2008-52355
Chen, C. H., Q. Cai, and C. L. Chen. “Evaporation and condensation on two-tier superhydrophobic surfaces.” 2008 Proceedings of the ASME Micro Nanoscale Heat Transfer International Conference Mnht 2008 PART B (August 20, 2008): 1021–22. https://doi.org/10.1115/MNHT2008-52355.
Chen CH, Cai Q, Chen CL. Evaporation and condensation on two-tier superhydrophobic surfaces. 2008 Proceedings of the ASME Micro Nanoscale Heat Transfer International Conference Mnht 2008. 2008 Aug 20;PART B:1021–2.
Chen, C. H., et al. “Evaporation and condensation on two-tier superhydrophobic surfaces.” 2008 Proceedings of the ASME Micro Nanoscale Heat Transfer International Conference Mnht 2008, vol. PART B, Aug. 2008, pp. 1021–22. Scopus, doi:10.1115/MNHT2008-52355.
Chen CH, Cai Q, Chen CL. Evaporation and condensation on two-tier superhydrophobic surfaces. 2008 Proceedings of the ASME Micro Nanoscale Heat Transfer International Conference Mnht 2008. 2008 Aug 20;PART B:1021–1022.

Published In

2008 Proceedings of the ASME Micro Nanoscale Heat Transfer International Conference Mnht 2008

DOI

Publication Date

August 20, 2008

Volume

PART B

Start / End Page

1021 / 1022