Frost formation can cause operational difficulty and efficiency loss for many facilities such as aircraft, wind turbines, and outdoor heat exchangers. Self-propelled jumping by condensate droplets on superhydrophobic surfaces delays frost formation, so many attempts have been made to exploit this phenomenon. However, practical application of this phenomenon is currently unfeasible because many processes to fabricate the superhydrophobic surfaces are inefficient and because self-propelled jumping is difficult to be achieved in a humid and low-temperature environment because superhydrophobicity is degraded in these conditions. Here, we achieved significantly effective anti-icing superhydrophobic aluminum. Its extremely low adhesive properties...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Recent studies have shown that frost can grow in a suspended Cassie state on nanostructured superhyd...
Self-propelled jumping drops are continuously removed from a condensing superhydrophobic surface to ...
The research of superhydrophobic materials has attracted many researchers' attention due to its ...
Frost formation on heat transfer equipment such as air-source heat pump evaporators can result in dr...
Undesirable water freezing (icing) usually occurs in cold environments and may have lethal consequen...
The research of superhydrophobic materials has attracted many researchers' attention due to its appl...
Atmospheric icing from supercooled droplets in the atmosphere can have catastrophic consequences for...
Unwanted ice formation on surfaces is ubiquitous and often leads to catastrophic events, resulting i...
In order to solve the frosting problem of air source heat pump (ASHP) outdoor heat exchange under lo...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Recent studies have shown that frost can grow in a suspended Cassie state on nanostructured superhyd...
Self-propelled jumping drops are continuously removed from a condensing superhydrophobic surface to ...
The research of superhydrophobic materials has attracted many researchers' attention due to its ...
Frost formation on heat transfer equipment such as air-source heat pump evaporators can result in dr...
Undesirable water freezing (icing) usually occurs in cold environments and may have lethal consequen...
The research of superhydrophobic materials has attracted many researchers' attention due to its appl...
Atmospheric icing from supercooled droplets in the atmosphere can have catastrophic consequences for...
Unwanted ice formation on surfaces is ubiquitous and often leads to catastrophic events, resulting i...
In order to solve the frosting problem of air source heat pump (ASHP) outdoor heat exchange under lo...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Ice-repellent coatings can have significant impact on global energy savings and improving safety in ...
Recent studies have shown that frost can grow in a suspended Cassie state on nanostructured superhyd...
Self-propelled jumping drops are continuously removed from a condensing superhydrophobic surface to ...