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Surface Modification of Copper-Based Flakes for Conductive Polymer Composites
Mohor Mihelčič1, Alen Oseli1, Tadej Rojac2
1Faculty of Mechanical Engineering, University of Ljubljana, Aškerčeva Ulica 6, 1000 Ljubljana, Slovenia.
Polymers
|June 27, 2024
Summary
Surface coatings on copper flakes significantly impact polymer composite properties. Silver-coated copper flakes (Cu@Ag) show lower percolation thresholds and dramatically enhanced electrical conductivity compared to uncoated (Cu) or silica-coated (Cu@Si) copper.
Area of Science:
- Materials Science
- Polymer Science
Background:
- Surface protection of copper particles enhances thermal and electrical stability.
- Coating material choice is crucial for optimizing copper particle properties in polymer composites.
Purpose of the Study:
- To characterize rheological, thermal, mechanical, and electrical properties of polymer composites containing uncoated (Cu), silver-coated (Cu@Ag), and silica-coated (Cu@Si) copper flakes.
- To investigate the effect of different surface coatings on particle interactions, percolation thresholds, and electrical conductivity.
Main Methods:
- Preparation of low-density polyethylene composites with varying volume concentrations (up to 40%) of Cu, Cu@Ag, and Cu@Si flakes.
- Rheological, thermal, mechanical, and electrical characterization of the composites.
- Analysis of particle interactions and network formation through rheological properties.
Main Results:
- Geometrical and electrical percolation occurred at ~15% for Cu and Cu@Si, but surprisingly lower (~7.5%) for Cu@Ag due to silver coating fusion.
- Coating materials did not enhance load transfer for mechanical reinforcement.
- Cu@Ag exhibited significantly superior electrical conductivity (74.4 S/m) compared to Cu (1.7 × 10-4 S/m) and Cu@Si (1.5 × 10-10 S/m).
Conclusions:
- Surface coating significantly influences the electrical percolation threshold and conductivity of copper-polymer composites.
- Silver coating on copper flakes is highly effective in enhancing electrical conductivity for electronic applications.
- The findings are vital for designing advanced polymer composites with tailored electrical properties.

