Publications

HARMoNIC in the search of Ultrathin Durable Organic Hydrophobic Coatings Enhancing Dropwise Condensation Heat Transfer. Read about the outcome external page here.

The role of shadowed droplets in condensation heat transfer was just accepted for publication in the International Journal of Heat and Mass Transfer! The article is available online external page here.

A new publication for the HARMoNIC family! The NCSR-D team just had their paper published on the topic A symmetry-based approach to the characterization of complex surface morphologies: Application in CuO and NiO nanostructures - you can read about it external page here

Congrats to the Italian team of HARMoNIC! They just published a paper on the topic of external page Polyimide foam composites with nano‑boron nitride (BN) and silicon carbide (SiC) for latent heat storage!

The HARMoNIC consortium, with the involvement of the Greek and Swiss teams, just published a new paper on the topic of Measuring the complexity of micro and nanostructured surfaces, read about it external page here.

The newest publication of HARMoNIC out! The collaboration between the ETH and MPIP HARMoNIC teams is entiteld Enhanced Condensation on Soft Materials through Bulk Lubricant Infusion and can be found external page here.

The HARMoNIC team at NCSR-D just published a new article answering the question: external page How Different Are Fog Collection and Dew Water Harvesting on Surfaces with Different Wetting Behaviors?

News from the HARMoNIC team! Read more about Ultra-Thin Lubricant-Infused Vertical Graphene Nanoscaffolds for High-Performance Dropwise Condensation external page here

Read about the newest HARMoNIC publication Transparent and Robust Amphiphobic Surfaces Exploiting Nanohierarchical Surface-grown Metal–Organic Frameworks external page here!

external page Droplet Self-Propulsion on Superhydrophobic Microtracks was just published! Read more about the newest HARMoNIC publication external page here.

HARMoNIC manuscript accepted for publication in Nature Communications!

external page Superhydrophobic Hemostatic Nanofiber Composites for Fast Clotting and Minimal Adhesion

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