Literature DB >> 19596336

On the pinning of interfaces on micropillar edges.

J Berthier1, F Loe-Mie, V-M Tran, S Schoumacker, F Mittler, G Marchand, N Sarrut.   

Abstract

Microsystems for biotechnology often make use of pillars to perform the targeted microfluidic functions. In many cases the role of the pillars is to block or maintain fixed an interface between two immiscible fluids. This phenomenon is usually called pinning. The pining principle is used for capillary valves, liquid-liquid extraction devices, etc. It is common to estimate the pinning efficiency by considering mathematically perfect edges. In reality, microfabricated edges always show some smoothness that can be modeled by a small curvature radius. In this work, we investigate the pinning on square, circular, triangular, and diamond-shaped pillars, and analyze the anchoring on the upstream edges (first pinning conditions) and possibly on the downstream edges (second pinning conditions). It is shown that pinning efficiency decreases very quickly with the curvature radius of the pillar edge. It is concluded that the quality of the microfabrication is essential. Especially oxidation of the silicon reduces considerably the pinning efficiency. Moreover, it is shown that square pillars pin better an interface than triangular pillars. For triangular pillars, a pillar angle--angle between two facets--optimal for pinning has been determined that depends on the quality of microfabrication.

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Year:  2009        PMID: 19596336     DOI: 10.1016/j.jcis.2009.06.007

Source DB:  PubMed          Journal:  J Colloid Interface Sci        ISSN: 0021-9797            Impact factor:   8.128


  5 in total

1.  Suspended microfluidics.

Authors:  Benjamin P Casavant; Erwin Berthier; Ashleigh B Theberge; Jean Berthier; Sara I Montanez-Sauri; Lauren L Bischel; Kenneth Brakke; Curtis J Hedman; Wade Bushman; Nancy P Keller; David J Beebe
Journal:  Proc Natl Acad Sci U S A       Date:  2013-05-31       Impact factor: 11.205

2.  The Role of Contact Line (Pinning) Forces on Bubble Blockage in Microchannels.

Authors:  Mahshid Mohammadi; Kendra V Sharp
Journal:  J Fluids Eng       Date:  2015-03       Impact factor: 1.995

3.  A microfluidic cell co-culture platform with a liquid fluorocarbon separator.

Authors:  Bryson M Brewer; Mingjian Shi; Jon F Edd; Donna J Webb; Deyu Li
Journal:  Biomed Microdevices       Date:  2014-04       Impact factor: 2.838

4.  Pico-washing: simultaneous liquid addition and removal for continuous-flow washing of microdroplets.

Authors:  Michael J Siedlik; David Issadore
Journal:  Microsyst Nanoeng       Date:  2022-04-29       Impact factor: 8.006

5.  In situ experiments to reveal the role of surface feature sidewalls in the Cassie-Wenzel transition.

Authors:  René Hensel; Andreas Finn; Ralf Helbig; Sebastian Killge; Hans-Georg Braun; Carsten Werner
Journal:  Langmuir       Date:  2014-12-12       Impact factor: 3.882

  5 in total

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