Complex Filling Dynamics in Mesoporous Thin Films.

Langmuir

INTEC (Universidad Nacional del Litoral-CONICET) Predio CCT CONICET Santa Fe , RN 168, S3000 Santa Fe, Argentina.

Published: January 2017

AI Article Synopsis

  • The study examines how water infiltration and evaporation interact in nanofluidic systems, specifically in titania and silica mesoporous films.
  • A simple experiment was conducted where a drop of water was placed on these films to observe how the fluid spreads and fills the porous structure over time.
  • The findings revealed that in titania films, a steady wetted region forms, while in wormlike morphologies, the fluid front oscillates instead of stabilizing, highlighting complex dynamics that could lead to new applications in nanofluidics.

Article Abstract

The fluid-front dynamics resulting from the coexisting infiltration and evaporation phenomena in nanofluidic systems has been investigated. More precisely, water infiltration in both titania and silica mesoporous films was studied through a simple experiment: a sessile drop was deposited over the film and the advancement of the fluid front into the porous structure was optically followed and recorded in time. In the case of titania mesoporous films, capillary infiltration was arrested at a given distance, and a steady annular region of the wetted material was formed. A simple model that combines Lucas-Washburn infiltration and surface evaporation was derived, which appropriately describes the observed filling dynamics and the annulus width in dissimilar mesoporous morphologies. In the case of wormlike mesoporous morphologies, a remarkable phenomenon was found: instead of reaching a steady infiltration-evaporation balance, the fluid front exhibits an oscillating behavior. This complex filling dynamics opens interesting possibilities to study the unusual nanofluidic phenomena and to discover novel applications.

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Source
http://dx.doi.org/10.1021/acs.langmuir.6b03987DOI Listing

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