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- W2989736907 abstract "The growth of bubbles has been extensively studied for decades. However, the bubbling inside a single drop on complex surfaces and its subsequent effects on drop are not well understood yet. A systematical investigating of bubbling mechanism in drops on customized microscale pore-patterned surfaces is presented, and the results demonstrate that drop behaviors can be controlled under low air pressure. As the pressure decreases, the drop behaves via two approaches, depending on the competition between the critical chamber pressure and the lower limit of pressure. When the former one is higher, drop prefers to expand, otherwise, evaporation occurs. Further studies suggest that the drop expansion consists of two stages: pinning mode and pinning to depinning transition. This work provides new insights in understanding of bubbling physics on complex patterned substrates, opens a general route for the controlling of drop behaviors under low air pressure, and can also find potential applications in optimization design for self-cleaning patterned surface." @default.
- W2989736907 created "2019-12-05" @default.
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- W2989736907 date "2020-07-01" @default.
- W2989736907 modified "2023-10-09" @default.
- W2989736907 title "Drop expansion driven by bubbling on microscale patterned substrates under low air pressure" @default.
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- W2989736907 doi "https://doi.org/10.1016/j.cej.2019.123547" @default.
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