Publication detail

In-situ Confocal Laser Microscopy Study of Lead Sulfate Crystal Growth on Negative Electrode of Lead-acid Batteries

CHLADIL, L. HÁLOVÁ, H. ČECH, O.

Original Title

In-situ Confocal Laser Microscopy Study of Lead Sulfate Crystal Growth on Negative Electrode of Lead-acid Batteries

Type

conference paper

Language

English

Original Abstract

Confocal Laser Scanning Microscopy (CLSM) is a widely used technique mainly in fields of biology or multidisciplinary material sciences. Although CLSM has the ability to monitor also electrochemical processes like lead sulfate-crystal growth, nobody used CLSM for such application. We performed operando observation of the pasted active mass of negative electrode for lead-acid batteries during deep cycling. Electrode with pasted negative active mass was optimized for cycling in ECC-opto-std electrochemical cell by EL-CELL. Lead sulfate crystal growth and changes of electrode surface during cycling were observed using a laser scanning confocal microscope Olympus Lext OLS4100. We evaluate the surface changes and sulfate crystal growth. The cycling mode leads to fast gradual degradation of the negative electrode and massive growth of lead sulfate crystals. Confocal laser scanning microscopy was identified as a powerful technique for visualization of lead sulfate crystal promotion during battery cycling.

Keywords

Confocal laser microscopy, Laser microscopy, In-situ, Operando, Lead-Acid, Battery, sulfation, Lead sulfate, electrochemistry, Crystal Growth

Authors

CHLADIL, L.; HÁLOVÁ, H.; ČECH, O.

Released

10. 12. 2021

Publisher

IOP Publishing Ltd

ISBN

9781607685395

Book

ECS Transactions

ISBN

1938-5862

Periodical

ECS Transactions

Year of study

105

Number

1

State

United States of America

Pages from

159

Pages to

166

Pages count

8

URL

BibTex

@inproceedings{BUT175515,
  author="Ladislav {Chladil} and Hana {Hálová} and Ondřej {Čech}",
  title="In-situ  Confocal  Laser  Microscopy  Study  of  Lead  Sulfate  Crystal Growth  on Negative  Electrode  of  Lead-acid  Batteries",
  booktitle="ECS Transactions",
  year="2021",
  journal="ECS Transactions",
  volume="105",
  number="1",
  pages="159--166",
  publisher="IOP Publishing Ltd",
  doi="10.1149/10501.0159ecst",
  isbn="9781607685395",
  issn="1938-5862",
  url="https://iopscience.iop.org/article/10.1149/10501.0159ecst/meta"
}