
New chemical plating modifier
Bio-based two-step electroless plating is free of heavy metals, has excellent properties, and is widely suitable for large pieces.
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Solution maturity
Early adoption / Process verification
Cooperation methods
Applicable industry
Applications
Key innovations
This technology achieves "two-step" electroless plating through bioactive substances and directional polymerization, simplifying the process, avoiding heavy metal pollution, and its performance is 10% better than similar products.
Potential economic benefits
Streamlining the process significantly reduces production costs and environmental expenses. Performance improvement by 10% enhances competitiveness, excellent coating extends product life, and broadens applications and increases market revenue.
Potential climate benefits
Simplified process and efficient catalysis can reduce energy consumption, avoid heavy metal pollution and reduce energy consumption for waste treatment. Improved coating performance extends product life, thereby reducing carbon emissions throughout the life cycle.
Solution supplier
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Hefei college
Hefei University is characterized by the integration of industry and education, cultivates high-quality applied talents and serves the economic and social development of Hefei and the region.
Hefei,China
Solution details
Currently, the processes involved in the industry include: modification, sensitization and activation and electroless plating, commonly known as the "three-step" process. The team uses bioactive substances and catalytic particles as raw materials and uses directional polymerization process to prepare a new activation solution. At the same time, it modifies and activates the substrate to achieve "two-step" electroless plating. It has good catalytic ability, excellent coating adhesion, and bright coating., and performance is 10% higher than that of the similar product of Japanese HF-1098.
This technology can simplify the current preparation process and avoid heavy metal ion pollution. It is especially suitable for electroless plating on the surfaces of large substrates such as large pieces, graphite blocks, and powders. Metal layers such as nickel, copper, and silver prepared by the electroless plating process have excellent uniformity, hardness, wear resistance and corrosion resistance, and are not controlled by the shape of the substrate. This technology is widely used in electronics, valve manufacturing, machinery, petrochemicals, automobiles, aerospace and other fields.
This technology can simplify the current preparation process and avoid heavy metal ion pollution. It is especially suitable for electroless plating on the surfaces of large substrates such as large pieces, graphite blocks, and powders. Metal layers such as nickel, copper, and silver prepared by the electroless plating process have excellent uniformity, hardness, wear resistance and corrosion resistance, and are not controlled by the shape of the substrate. This technology is widely used in electronics, valve manufacturing, machinery, petrochemicals, automobiles, aerospace and other fields.
Last updated
07:42:10, Nov 05, 2025
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