Design of electrical energy harvesting devices utilizing air bubbles sliding along a fluoropolymer immersed in water

Author:

Håskjold O EORCID,Helseth L EORCID

Abstract

Abstract Recent research has shown that it is possible to utilize contact electrification combined with electrostatic induction to harvest electrical energy from the mechanical motion of air bubbles sliding along a charged solid surface immersed in water. The working principle of these devices is simple, but the design is usually complicated as transduction efficiency depends on a number of interdependent parameters. Here we propose a simple analytical model and demonstrate how it can be used to determine the optimal energy per bubble for a given resistive load. The model allows one to estimate the optimal energy harvested per bubble in terms of polymer thickness, electrode separation and load resistance. It is shown that the model provides a good fit to experimental data. The model may be used as an initial step when designing energy harvesting devices utilizing air bubbles sliding along a solid surface.

Publisher

IOP Publishing

Reference60 articles.

1. On a self-acting apparatus for multiplying and maintain electric charges, with applications to illustrate the voltaic theory;Thomson;Proc. R. Soc.,1867

2. The relation between contact charge transfer and chemical donor properties;Williams;J. Coll. Int. Sci.,1982

3. Electrification of pure water flowing down a through set up with a resin sheet;Matsui;J. Electrostat.,1993

4. Electrification phenomena of pure water droplets dripping and sliding on a polymer surface;Yatsuzuka;J. Electrostat.,1994

5. The intrinsic charge on hydrophobic microfluidic substrates;Beattie;Lab Chip,2006

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