Hydrogel Leclanché Cell: Construction and Characterization

Author:

Jenson GregORCID,Singh GurjapORCID,Bhama Jay K.,Ratner AlbertORCID

Abstract

A liquid-to-gel based Leclanché cell has been designed, constructed and characterized for use in implantable medical devices and other applications where battery access is limited. This well-established chemistry will provide reliable electrochemical potential over a wide range of applications and the novel construction provides a solution for the re-charging of electrodes in hard to access areas such as an internal pacemaker. The traditional Leclanché cell, comprised of zinc (anode) and manganese dioxide (cathode), conductive carbon powder (acetylene black or graphite), and aqueous electrolyte (NH4Cl and ZnCl2), has been suspended in an agar hydrogel to simplify construction while maintaining electrochemical performance. Agar hydrogel, saturated with electrolyte, serves as the cell support and separator allowing for the discharged battery suspension to be easily replaced once exhausted. Different amounts of active anode/cathode material have been tested and discharge characteristics have been plotted. It has been found that for the same amount of active material, acetylene black batteries have higher energy density compared to graphite batteries. Graphite batteries also discharge faster compared to acetylene black batteries. The results support further development of liquid batteries that can be replaced and refilled upon depletion.

Funder

U.S. Department of Transportation

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference52 articles.

1. European Perspectives

2. Origins of the implantable cardiac pacemaker;Greatbatch;J. Cardiovasc. Nurs.,1991

3. Cardiac pacemakers: a basic review of the history and current technology

4. Trends in Cardiac Pacemaker Batteries;Mallela;Indian Pacing Electrophysiol. J.,2004

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