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Updated: May 7, 2026

Capillary-based Centrifugal Microfluidic Device for Size-controllable Formation of Monodisperse Microdroplets
Published on: February 22, 2016
Monitoring picoliter sessile microdroplet dynamics shows that size does not matter
Isaac Rodríguez-Ruiz1, Zoubida Hammadi, Romain Grossier
1Laboratorio de Estudios Cristalográficos, IACT (CSIC-UGR) , Avda. de las Palmeras, 4, 18100 Armilla, Granada, Spain.
Abstract:
We monitor the dissolution of arrayed picoliter-size sessile microdroplets of the aqueous phase in oil, generated using a recently developed fluidic device. Initial pinning of the microdroplet perimeter leads to a nearly constant contact diameter, thus contraction proceeds via microdroplet (micrometer-diameter) height and contact angle reductions. This confirms that picoliter microdroplets contraction or dissolution due to the selective diffusion of water in oil has comparable dynamics with microliter droplet evaporation in air. We observe a constant microdroplet dissolution rate in different aqueous solutions. The application of this simple model to solvent-diffusion-driven crystallization experiments in confined volumes, for instance, would allow us to determine precisely the concentration in the microdroplet during an experiment and particularly at nucleation.

