Publication detail

Thermodynamics of Crystals Formation and Growth in a Sessile Droplet 

ZHU, H. ZHANG, Y. LU, H. FENG, J. YAN, QL., BRODSKÝ, J. GABLECH, I. NEUŽIL, P.

Original Title

Thermodynamics of Crystals Formation and Growth in a Sessile Droplet 

Type

journal article in Web of Science

Language

English

Original Abstract

Accurately detecting subtle thermodynamics during crystallization and associated water evaporation processes, especially around seed formation, has been challenging. Here, we report a method to investigate the complex energy changes during these simultaneous endothermic and exothermic events. We employ an open-space microcalorimeter, coupled with optical observation using a microscope equipped with a camera for real-time monitoring. This method reveals crystal formation by observing energy changes and simultaneously visualizing the sample. The concentration influence for potassium chloride crystallization is analyzed, including energy released and the evaporation thermodynamics using isothermal microcalorimetry. We also monitor the energy dissipation during crystallization, showing an ≈4.2 s period for potassium chloride crystal seed formation with a released energy of ≈11.9 μJ. This method can potentially reshape strategies for controlled crystallization across diverse industrial and laboratory settings. Extending beyond potassium chloride, our findings shed light on broader crystallization dynamics, paving the way for innovations in materials and energy sciences.

Keywords

energy dissipation; microcalorimetry; salt crystallization; crystal seed formation; thermodynamics

Authors

ZHU, H.; ZHANG, Y.; LU, H.; FENG, J.; YAN, QL., BRODSKÝ, J.; GABLECH, I.; NEUŽIL, P.

Released

9. 5. 2024

Publisher

Cell Press

Location

USA

ISBN

2666-3864

Periodical

Cell Reports Physical Science

Year of study

5

Number

6

State

United States of America

Pages from

1

Pages to

15

Pages count

15

URL

BibTex

@article{BUT188442,
  author="Jan {Brodský} and Imrich {Gablech} and Pavel {Neužil} and Hanliang {Zhu} and Yue {Zhang} and Haiyang {Lu} and Jianguo {Feng} and Qi-Long {Yan}",
  title="Thermodynamics of Crystals Formation and Growth in a Sessile Droplet ",
  journal="Cell Reports Physical Science",
  year="2024",
  volume="5",
  number="6",
  pages="1--15",
  doi="10.1016/j.xcrp.2024.101971",
  issn="2666-3864",
  url="https://www.sciencedirect.com/science/article/pii/S0165993624001584"
}