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HomeAuthorsBayer I.S.

Authors: Bayer I.S.

Elastic Superhydrophobic Nanocomposites with Enhanced Mechanical Durability

Milionis A., Languasco J., Loth E., Bayer I.S., University of Virginia, US
The vast majority of superhydrophobic surfaces are very fragile which is their main limiting factor for commercialization. Improving their mechanical durability has been a major issue during the last years. In this work we demonstrate [...]

Microscopic “Slide-Snap” Receding Contact Line Dynamics on Superhydrophobic Surfaces

Yeong Y.H., Milionis A., Bayer I.S., Loth E., University of Virginia, US
Receding angles have been shown to have great significance when designing a superhydrophobic surface for applications involving self-cleaning. Although apparent receding angles under dynamic conditions have been well studied, the microscopic receding contact line dynamics [...]

Mechanically Durable Superhydrophobic Nanocomposites from Acrylonitrile Butadiene Styrene (ABS)

Milionis A., Yeong Y.H., Loth E., Bayer I.S., University of Virginia, US
We report on the development of nanocomposites based on a combination of ABS with hydrophobically modified fumed silica (HMFS). By tuning the ratio between the two materials we are again able to obtain static water [...]

Superhydrophobic 3D Printed Surfaces by Dip-Coating

Milionis A., Loth E., Bayer I.S., University of Virginia, US
Here we demonstrate a technique to fabricate three-dimensional superhydrophobic patterns. First a three-dimensional pattern was designed by 3D printing using acrylonitrile butadiene styrene (ABS) as printing material. A linear printing algorithm is followed for the [...]

Mechanically Durable Superhydrophobic Nanocomposites from Acrylonitrile Butadiene Styrene (ABS)

Milionis A., Yeong Y.H., Loth E., Bayer I.S., University of Virginia, US
We report on the development of nanocomposites based on a combination of ABS with hydrophobically modified fumed silica (HMFS). By tuning the ratio between the two materials we are again able to obtain static water [...]

Effect of superhydrophobic nanocomposite surface roughness on anti-icing performance

Davis A., Yeong Y.H., Steele A., Loth E., Bayer I.S., University of Virginia, US
While past work has shown the ice-phobic potential of a superhydrophobic surface or noted the effect of surface area on ice adhesion to an array of microposts, questions still remain on the effect of a [...]

PVDF based polymer nanocomposite coatings for large area applications

Tiwari M.K., Bayer I.S., Megaridis C.M., University of Illinois at Chicago, US
A class of polymer nanocomposites consisting of all biocompatible components has been developed for large area coating applications. The coatings are made possible by solution blending of poly (vinylidine fluoride) (PVDF) with polymerized ethyl cyanoacrylate. [...]

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3D Printing Advanced Manufacturing Advanced Materials for Engineering Applications AI Innovations Biofuels & Bioproducts Biomaterials Cancer Nanotechnology Carbon Capture & Utilization Carbon Nano Structures & Devices Catalysis Chemical, Physical & Bio-Sensors Coatings, Surfaces & Membranes Compact Modeling Composite Materials Diagnostics & Bioimaging Energy Storage Environmental Health & Safety of Nanomaterials Fuel cells & Hydrogen Graphene & 2D-Materials Informatics, Modeling & Simulation Inkjet Design, Materials & Fabrication Materials Characterization & Imaging Materials for Drug & Gene Delivery Materials for Oil & Gas Materials for Sustainable Building MEMS & NEMS Devices, Modeling & Applications Micro & Bio Fluidics, Lab-on-Chip Modeling & Simulation of Microsystems Nano & Microfibrillated Cellulose Nanoelectronics Nanoparticle Synthesis & Applications Personal & Home Care, Food & Agriculture Photonic Materials & Devices Printed & Flexible Electronics Sensors - Chemical, Physical & Bio Solar Technologies Sustainable Materials Water Technologies WCM - Compact Modeling
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