Named SEMI S3 2025 Semi-Finalist

We’re excited to share that XLYNX Materials (Victoria, BC) has been selected as a semi-finalist for the 2025 SEMI Startups for Sustainable Semiconductors (S3) program! This significant recognition highlights the critical role our advanced polymer technology plays in shaping a more sustainable future for the electronics industry.

This underscores the innovative potential of our revolutionary polymer crosslinkers. As you know, our technology uniquely cures virtually any aliphatic polymer by harnessing high-yielding insertions to carbon-hydrogen bonds, offering flexible thermal or photochemical triggering.

This achievement is a testament to our team’s dedication and the transformative impact of our technology in creating more robust and environmentally conscious material solutions across various sectors, including semiconductors.

The Path to PFAS-Free High-Performance Electronics

The global push to eliminate Per- and Polyfluoroalkyl Substances (PFAS) from manufacturing processes presents a significant challenge for the electronics industry. While PFAS have offered unique properties, their environmental persistence and health concerns necessitate their replacement. However, finding high-performance alternatives without compromising critical material characteristics has been difficult.

XLYNX Materials offers a clear solution. Our diazirine crosslinking technology provides a robust, high-performance pathway to truly PFAS-free and halogen-free electronic materials. We enable the development of adhesives, dielectrics, and encapsulants that not only meet stringent environmental regulations but also maintain or even surpass the performance benchmarks of their PFAS-containing predecessors. This allows you to future-proof your designs and contribute to a more sustainable electronics ecosystem.

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We’re Here to Help

What adhesion, stabilization or photopatterning challenge is your business facing?

Let’s talk.

Our platform of diazirine crosslinking technology is proven to improve performance across a wide range of applications, and can be customized for specific material substrates.

To learn more, contact us at any time:

info@xlynxmaterials.com