Functional coatings: Exploiting microscale roughness on superhydrophobic copper surfaces
Advancements in nanofabrication techniques allow for the manufacture of superhydrophobic surfaces inspired by those found in nature; artificial structures can be engineered for superior removal of tiny condensed droplets so as to rapidly expose fresh substrate areas for new droplet nucleation.
Nano-structures resemble surfaces of lotus leaves
In new research, a technique has been developed to fabricate hierarchical micro- and nano-structures that resemble the surfaces of lotus leaves, but are produced on copper substrates for heat transfer applications. The study shows that the hierarchical features, in contrast to homogeneously nano-structured surfaces, can synergistically facilitate condensed-droplet nucleation, growth, and departure processes to enhance dropwise condensation on metallic copper surfaces. The results open up novel and exciting vistas in surface engineering for applications in high-performance and efficient thermal systems.
The study is published in: Advanced Material Interfaces.