Open Access
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volume 12 issue 6 pages 755

Droplet Spreading Characteristics on Ultra-Slippery Solid Hydrophilic Surfaces with Ultra-Low Contact Angle Hysteresis

Yajie Song 1
Qi Wang 1
Yushan Ying 1
Zhuo You 2
Songbai Wang 1
Chun Jiang 1
MA Xuehu 1
Rongfu Wen 1
Publication typeJournal Article
Publication date2022-05-31
scimago Q2
wos Q2
SJR0.539
CiteScore5.4
Impact factor2.8
ISSN20796412
Materials Chemistry
Surfaces, Coatings and Films
Surfaces and Interfaces
Abstract

Dynamic interactions of the droplet impact on a solid surface are essential to many emerging applications, such as electronics cooling, ink-jet printing, water harvesting/collection, anti-frosting/icing, and microfluidic and biomedical device applications. Despite extensive studies on the kinematic features of the droplet impact on a surface over the last two decades, the spreading characteristics of the droplet impact on a solid hydrophilic surface with ultra-low contact angle hysteresis are unclear. This paper clarifies the specific role of the contact angle and contact angle hysteresis at each stage of the droplet impact and spreading process. The spreading characteristics of the droplet impact on an ultra-slippery hydrophilic solid surface are systematically compared with those on plain hydrophilic, hydroxylated hydrophilic, and plain hydrophobic surfaces. The results reveal that the maximum spreading factor (βmax) of impacting droplets is mainly dependent on the contact angle and We. βmax increases with the increase in We and the decrease in the contact angle. Low contact angle hysteresis can decrease the time required to reach the maximum spreading diameter and the time interval during which the maximum spreading diameter is maintained when the contact angles are similar. Moreover, the effect of the surface inclination angle on the spreading and slipping dynamics of impacting droplets is investigated. With the increase in the inclination angle and We, the gliding distance of the impacting droplet becomes longer. Ultra-low contact angle hysteresis enables an impacting droplet to slip continuously on the ultra-slippery hydrophilic surface without being pinned to the surface. The findings of this work not only show the important role of the surface wettability in droplet spreading characteristics but also present a pathway to controlling the dynamic interactions of impacting droplets with ultra-slippery hydrophilic surfaces.

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GOST |
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GOST Copy
Song Y. et al. Droplet Spreading Characteristics on Ultra-Slippery Solid Hydrophilic Surfaces with Ultra-Low Contact Angle Hysteresis // Coatings. 2022. Vol. 12. No. 6. p. 755.
GOST all authors (up to 50) Copy
Song Y., Wang Q., Ying Y., You Z., Wang S., Jiang C., Xuehu M., Wen R. Droplet Spreading Characteristics on Ultra-Slippery Solid Hydrophilic Surfaces with Ultra-Low Contact Angle Hysteresis // Coatings. 2022. Vol. 12. No. 6. p. 755.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.3390/coatings12060755
UR - https://doi.org/10.3390/coatings12060755
TI - Droplet Spreading Characteristics on Ultra-Slippery Solid Hydrophilic Surfaces with Ultra-Low Contact Angle Hysteresis
T2 - Coatings
AU - Song, Yajie
AU - Wang, Qi
AU - Ying, Yushan
AU - You, Zhuo
AU - Wang, Songbai
AU - Jiang, Chun
AU - Xuehu, MA
AU - Wen, Rongfu
PY - 2022
DA - 2022/05/31
PB - MDPI
SP - 755
IS - 6
VL - 12
SN - 2079-6412
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2022_Song,
author = {Yajie Song and Qi Wang and Yushan Ying and Zhuo You and Songbai Wang and Chun Jiang and MA Xuehu and Rongfu Wen},
title = {Droplet Spreading Characteristics on Ultra-Slippery Solid Hydrophilic Surfaces with Ultra-Low Contact Angle Hysteresis},
journal = {Coatings},
year = {2022},
volume = {12},
publisher = {MDPI},
month = {may},
url = {https://doi.org/10.3390/coatings12060755},
number = {6},
pages = {755},
doi = {10.3390/coatings12060755}
}
MLA
Cite this
MLA Copy
Song, Yajie, et al. “Droplet Spreading Characteristics on Ultra-Slippery Solid Hydrophilic Surfaces with Ultra-Low Contact Angle Hysteresis.” Coatings, vol. 12, no. 6, May. 2022, p. 755. https://doi.org/10.3390/coatings12060755.