Archer Materials reports positive results from initial testing of potassium-sensing biochip device

Archer Materials has reported that initial data from first-stage testing of its blood potassium graphene Biochip project have shown the technology suitable for silicon for point-of-care and at-home diagnostic applications. Archer expects the findings to de-risk its supply chain, reduce unit costs, and accelerate the pathway towards manufacture and commercialization.

The company now plans to finalize a working prototype and progress toward clinical trials in the new year as it moves towards project validation and commercial readiness.

 

Archer has partnered with the Interuniversity Microelectronics Centre (IMEC) in Belgium to develop the Biochip and blood potassium sensor, with IMEC leveraging its semiconductor technology and expertise to enable the use of graphene and silicon-based devices during testing.

First results have shown the silicon devices can meet blood potassium accuracy requirements, matching Archer’s graphene field effect transistor (gFET) performance as well as the clinical CLIA standard. Testing reportedly demonstrated strong potential for a high-performance, scalable, and clinically-compliant biosensor platform - the first major step in accelerating the Biochip’s development and commercialization.

IMEC has fabricated three Biochip-based sensor devices using its established silicon wafer processing technology which it then modified, functionalized, and tested using Archer’s proprietary methods to assess their potassium-sensing performance. The devices have delivered shorter conditioning and stabilization times of around 30 minutes, which is a significant improvement on current gFET lab testing results.

Archer chief executive officer, Dr. Simon Ruffell, said the initial data marked an important milestone for the company’s Biochip program: “Demonstrating that our technology can be built using silicon rather than graphene can significantly broaden our manufacturing options and strengthen our path to commercialization,” he said. “Leveraging IMEC’s world-class silicon fabrication capabilities alongside our proprietary sensor functionalization methods means we are in a position to […] expand our future applications in point-of-care and at-home diagnostics.”

Dr. Ruffell mentioned that the company would now begin planning the regulatory approvals pathway for the Biochip project, and work towards a new major project with IMEC focused on potassium sensing for chronic kidney disease.

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Posted: Oct 30,2025 by Roni Peleg