Thermal hysteresis in wettability and the Leidenfrost phenomenon

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Abstract

The Leidenfrost temperature (TL), at which the liquid drop lifetime peaks on a superheated surface, is believed to be wettability dependent. Here, we show that the wettability effect on TL is subject to the history of the surface temperature. Observing a water drop evaporating on a polished stainless-steel surface heated from 100 to 400°C in argon gas, we find TL≈265°C. We then repeat the experiment along decreasing temperature and find a TL increase by 10 K, i.e., TL≈275°C. This thermal hysteresis is due to a reduced contact angle during heating. Once hydrophilized, the hysteresis disappears until the contact angle recovers. Similar observations are made in the air where oxidation is possible.

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Kita, Y., Kida, K., Ariyoshi, T., Hidaka, S., Kohno, M., & Takata, Y. (2024). Thermal hysteresis in wettability and the Leidenfrost phenomenon. Physical Review Research, 6(3). https://doi.org/10.1103/PhysRevResearch.6.033287

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