Related Experiment Video
Updated: Aug 14, 2026

Facile Protocol for the Synthesis of Self-assembling Polyamine-based Peptide Amphiphiles (PPAs) and Related Biomaterials
Published on: June 25, 2018
Freezing-Thawing-Induced Hydrogen Peroxide Formation in PFA Containers
Laura Josefine Werner1, Alexander Theis1, Rutvik Lathia2
1Max Planck Institute for Chemistry , Hahn-Meitner-Weg 1, 55128Mainz, Germany.
Freezing and thawing water in fluorinated containers generates hydrogen peroxide (H2O2) without external power. This process is influenced by cycles, polymer type, and solution conditions, suggesting a new pathway for H2O2 formation.
Area of Science:
- Physical Chemistry
- Materials Science
Background:
- Reactive oxygen species (ROS), including hydrogen peroxide (H2O2), are known to form at aqueous interfaces under dark conditions.
- The precise mechanisms driving H2O2 formation at interfaces, particularly during phase transitions, remain incompletely understood.
Purpose of the Study:
- To investigate the generation of H2O2 during the freezing and thawing of water in fluorinated polymer containers.
- To elucidate the factors influencing H2O2 formation, such as the number of freeze-thaw cycles, polymer type, salt concentration, dissolved oxygen, and temperature.
Main Methods:
- Utilized perfluoroalkoxy polymer (PFA) and polypropylene (PP) tubes for water freezing and thawing experiments.
- Quantified H2O2 production across varying numbers of freeze-thaw cycles, salt concentrations, and temperatures.
- Conducted experiments in an ozone-free glovebox to assess the role of dissolved oxygen.
Main Results:
- Demonstrated H2O2 generation in PFA containers upon freezing and thawing without external electrical bias or agitation.
- Observed a near-linear increase in H2O2 formation with the number of freeze-thaw cycles.
- Found that H2O2 yield is significantly higher in PFA compared to PP tubes and is dependent on salt concentration, dissolved oxygen, and temperature extremes.
Conclusions:
- Freezing and thawing of water in PFA containers is a novel pathway for H2O2 generation.
- This phenomenon is influenced by interfacial charge transfer and requires dissolved oxygen.
- Findings have implications for interpreting ROS measurements and understanding redox processes in freezing aqueous systems.
More Related Videos
13:35Plunge Freezing: A Tool for the Ultrastructural and Immunolocalization Studies of Suspension Cells in Transmission Electron Microscopy
Published on: May 5, 2017
07:06Investigating Long-Distance Transport of Perfluoroalkyl Acids in Wheat via a Split-Root Exposure Technique
Published on: September 28, 2022
Related Concept Videos
Autoxidation of Ethers to Peroxides and Hydroperoxides
Frost Action on Concrete
This freeze-thaw cycle primarily causes surface scaling, where...