Droplet evaporation characteristics on transparent heaters with different wettabilitiesElectronic supplementary information (ESI) available: Cross-sectional FE-SEM image of the Ni mesh structure on glass, complete evaporation times of water droplets on the surfaces of Ni mesh-based transparent heaters with different wetting properties at room temperature, evaporation process of water droplets on the surfaces of the Ni mesh-based transparent heaters with different wetting properties and heating t
To develop more effective defogging/deicing (or anti-fogging/anti-icing) devices based on transparent heaters, it is necessary to investigate droplet evaporation on the heater surfaces. However, the characteristics of this evaporation process have not yet been reported. Here, we present the evaporat...
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Main Authors | , , , , , , |
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Format | Journal Article |
Language | English |
Published |
22.09.2017
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Online Access | Get full text |
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Summary: | To develop more effective defogging/deicing (or anti-fogging/anti-icing) devices based on transparent heaters, it is necessary to investigate droplet evaporation on the heater surfaces. However, the characteristics of this evaporation process have not yet been reported. Here, we present the evaporation characteristics of water droplets and their evaporation rates on various transparent heaters (based on metal mesh, indium tin oxide thin film, and Ag nanowires) with various surface wettabilities. We determined that the evaporation characteristics of a droplet on the surface of a transparent heater depend on the surface wettability and that the evaporation rate can be controlled by modifying the surface wettability.
Evaporation characteristics of a droplet on the surface of a transparent heater depend on the surface wettability. |
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Bibliography: | Electronic supplementary information (ESI) available: Cross-sectional FE-SEM image of the Ni mesh structure on glass, complete evaporation times of water droplets on the surfaces of Ni mesh-based transparent heaters with different wetting properties at room temperature, evaporation process of water droplets on the surfaces of the Ni mesh-based transparent heaters with different wetting properties and heating temperatures (30 °C, 45 °C, 65 °C, and 95 °C), and total times for the complete water droplet evaporation on Si substrates with different wetting properties and heating temperatures. See DOI 10.1039/c7ra08888d |
ISSN: | 2046-2069 |
DOI: | 10.1039/c7ra08888d |