Back to Search Start Over

High-Performance Lead-Acid Batteries Enabled by Pb and PbO2 Nanostructured Electrodes: Effect of Operating Temperature

Authors :
Rosalinda Inguanta
Maria Grazia Insinga
Giuseppe Aiello
Bernardo Patella
Simone Pisana
Roberto Luigi Oliveri
Oliveri R.L.
Insinga M.G.
Pisana S.
Patella B.
Aiello G.
Inguanta R.
Source :
Applied Sciences, Vol 11, Iss 6357, p 6357 (2021), Applied Sciences, Volume 11, Issue 14
Publication Year :
2021
Publisher :
MDPI AG, 2021.

Abstract

Lead-acid batteries are now widely used for energy storage, as result of an established and reliable technology. In the last decade, several studies have been carried out to improve the performance of this type of batteries, with the main objective to replace the conventional plates with innovative electrodes with improved stability, increased capacity and a larger active surface. Such studies ultimately aim to improve the kinetics of electrochemical conversion reactions at the electrode-solution interface and to guarantee a good electrical continuity during the repeated charge/discharge cycles. To achieve these objectives, our contribution focuses on the employment of nanostructured electrodes. In particular, we have obtained nanostructured electrodes in Pb and PbO2 through electrosynthesis in a template consisting of a nanoporous polycarbonate membrane. These electrodes are characterized by a wider active surface area, which allows for a better use of the active material, and for a consequent increased specific energy compared to traditional batteries. In this research, the performance of lead-acid batteries with nanostructured electrodes was studied at 10 C at temperatures of 25, −20 and 40 °C in order to evaluate the efficiency and the effect of temperature on electrode morphology. The batteries were assembled using both nanostructured electrodes and an AGM-type separator used in commercial batteries.

Details

Language :
English
ISSN :
20763417
Volume :
11
Issue :
6357
Database :
OpenAIRE
Journal :
Applied Sciences
Accession number :
edsair.doi.dedup.....0940373b1d31483e0232baa5ac0087e8