arXiv · 1909.05221
Contactless Manipulation of Binary Droplets via Sensing of Localized Vapor Sources
Abstract
Droplet motion on surfaces influences phenomena as diverse as microfluidic liquid handling, printing technology and micro-organism migration. Typically, droplet motion is achieved by inducing energy gradients on a substrate or flow on the droplet's free surface. Current configurations for droplet manipulation have, however, limited applicability as they rely on carefully tailored wettability gradients and/or bespoke substrates. Here we demonstrate the contactless long-range manipulation of binary droplets on pristine substrates due to the sensing of localized water vapor sources. We show with analytical considerations that the dissipative nature of the driving forces at play, induced by tiny asymmetries in surface tension gradients, is essential to capture the droplet's manipulation mechanism. We then demonstrate its versatility by printing, aligning and reacting materials controllably in space and time.
Explore related subjects
Keep this discovery
Robert Malinowski, Ivan P. Parkin, Giorgio Volpe. 2019-09-11. Contactless Manipulation of Binary Droplets via Sensing of Localized Vapor Sources. https://doi.org/10.1126/sciadv.aba3636
Cite the original work for its findings. Save a collection to share your selection of sources.