Publication detail

In-situ Studies of Lead Sulfate Crystal Growth on Negative Electrode for Lead Acid Batteries

CHLADIL, L. HÁLOVÁ, H. SMEJKAL, J. ČECH, O.

Original Title

In-situ Studies of Lead Sulfate Crystal Growth on Negative Electrode for Lead Acid Batteries

Type

article in a collection out of WoS and Scopus

Language

English

Original Abstract

Our work is focused on the evaluation of electrode changes by two different in-situ techniques like Laser Confocal Scanning Microscopy (CLSM) and X-ray Powder Diffraction (XRD) that has the potential to online monitoring as the material composition in different states of charge but also evaluate the changes in crystal size both on nano-scale (using XRD) and on micro-scale (CLSM). The indirect connection of these methods could bring a new perspective on the recrystallization process and bring new knowledge about the effect of different types of additives on irreversible processes limiting the activity of lead-acid batteries.

Keywords

in-situ, Confocal Scanning Microscopy, CLSM, X-ray Powder Diffraction, XRD, lead sulfate, crystal growth

Authors

CHLADIL, L.; HÁLOVÁ, H.; SMEJKAL, J.; ČECH, O.

Released

13. 10. 2021

Publisher

ŠafárikPress

Location

Košice

ISBN

978-80-574-0039-4

Book

The 5th International Conference on Nanomaterials: Fundamentals and Applications

Edition

1

Pages from

59

Pages to

61

Pages count

90

URL

BibTex

@inproceedings{BUT173115,
  author="Ladislav {Chladil} and Hana {Hálová} and Jan {Smejkal} and Ondřej {Čech}",
  title="In-situ Studies of Lead Sulfate Crystal Growth on Negative Electrode for Lead Acid Batteries",
  booktitle="The 5th International Conference on Nanomaterials: Fundamentals and Applications",
  year="2021",
  series="1",
  pages="59--61",
  publisher="ŠafárikPress",
  address="Košice",
  isbn="978-80-574-0039-4",
  url="https://unibook.upjs.sk/sk/prirodovedecka-fakulta/1548-the-5th-international-conference-on-nanomaterials-fundamentals-and-applications?fbclid=IwAR3gov53y2NWY-NV4msqjFDK1xy3JArCsBPzBhVkZyZ9GTMJiXU_fwNNSKc"
}