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Updated: Mar 31, 2026

Controlling Flow Speeds of Microtubule-Based 3D Active Fluids Using Temperature
Published on: November 26, 2019
Thermal control of ionic transport and fluid flow in nanofluidic channels
Mojtaba Taghipoor1, Arnaud Bertsch, Philippe Renaud
1Microsystems Laboratory, École Polytechnique Fédérale de Lausanne, EPFL STI-IMT-LMIS, Station 17, 1015 Lausanne, Switzerland. mojtaba.taghipoor@epfl.ch.
Abstract:
In this work, we report a nanofluidic gating mechanism that uses the thermal effect for modulating the ionic transport inside nanofluidic channels. The control of the ionic transport inside a nanochannel is demonstrated using electrical conductivity. A thermal gate controls the ionic transport more effectively than most of the other gating mechanisms previously described in the scientific literature. Gating in both bulk and overlapping electric double layer regimes can be obtained. The relatively short response time of opening and closing processes makes it a good candidate for manipulating small molecules in micro- and nanoscale devices.
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