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In this episode of Hyfindr Tech Talks, we dive deep into hydrogen fuel cell technology and the revolutionary use of silicon bipolar plates with Daniel Zafir from SILTRAX. This in-depth hydrogen tech interview explores how silicon fuel cell stacks are transforming the hydrogen economy by delivering superior conductivity, durability, and cost efficiency. Learn how bipolar plate manufacturing is evolving through advanced silicon processing, and why silicon vs metal bipolar plates represents a major shift in fuel cell materials. Daniel explains how precision laser-etched microchannel fuel cells improve reactant flow, thermal management, and overall fuel cell efficiency, enabling high power density fuel cells that outperform traditional designs. The discussion also covers electrolyzer technology, hydrogen stack design, and how SILTRAX leverages photovoltaic-scale production to reduce costs and accelerate adoption of clean energy technology. With independently validated results, including a fuel cell world record for power density, this episode highlights a major leap in hydrogen innovation and advanced energy materials. Don’t miss this forward-looking conversation on how SILTRAX is enabling scalable, customizable, and sustainable energy solutions for aviation, automotive, marine, and stationary hydrogen applications. Chapters: 00:00 Introduction to Silicon Precision 00:32 Meet Daniel Zafir: From Neuroscience to Hydrogen Economy 00:48 Understanding Bipolar Plates in Fuel Cells 03:33 Silicon vs Traditional Bipolar Plate Materials 06:59 Silicon Bipolar Plate Manufacturing Process 14:59 Advancements in Silicon Conductivity 15:37 Breaking a Fuel Cell World Record 18:50 Customizing Silicon Fuel Cell Stacks 22:45 Durability and Cost Efficiency 25:52 Future Outlook for Hydrogen Technology Extensive Summary: In this episode of Hyfindr Tech Talks, we speak with Daniel Zafir from SILTRAX about a breakthrough in hydrogen fuel cells: the use of silicon-based bipolar plates in fuel cells and electrolyzer technology. Bipolar plates are one of the most critical fuel cell materials, providing structural integrity, electrical conduction, and controlled distribution of hydrogen, air, and cooling media within the stack. Traditionally, bipolar plates have been manufactured from metal or carbon-based materials, each presenting trade-offs in durability, weight, corrosion resistance, and cost. SILTRAX introduces a new paradigm by using doped silicon, drawing on decades of expertise from the semiconductor and photovoltaic industries. This approach embeds conductivity, thermal performance, and corrosion resistance directly into the material, eliminating coatings and improving long-term reliability. A key advantage of silicon is its ability to support ultra-precise microchannel fuel cell flow fields created through laser-based etching. This precision enhances reactant flow, water management, and heat removal, reducing mass transport limitations and significantly improving fuel cell efficiency. These innovations have enabled SILTRAX to achieve independently validated, record-breaking performance, including 9.7 kW per liter volumetric power density and 9.4 kW per kilogram gravimetric density—a major milestone in high power density fuel cells. Despite common concerns, silicon plates are mechanically robust once assembled and compressed within a stack, and chemically inert in acidic fuel cell environments, ensuring long-term durability. SILTRAX also emphasizes customization and scalability, using CAD-driven hydrogen stack design to tailor solutions for aviation, automotive, marine, drone, and stationary power applications. The interview concludes with a strong future outlook, positioning silicon bipolar plates as a transformative solution driving hydrogen innovation, lowering costs, and accelerating the global transition toward clean energy technology and a scalable hydrogen economy. Interview Partner: Daniel Zafir (SILTRAX) Topics discussed: Silicon Fuel Cells, hydrogen fuel cells,silicon bipolar plates,fuel cell technology,hydrogen economy,electrolyzer technology,bipolar plate manufacturing,silicon fuel cell stack,high power density fuel cells,hydrogen innovation,clean energy technology,fuel cell materials,silicon vs metal bipolar plates,microchannel fuel cells,hydrogen stack design,fuel cell efficiency,sustainable energy solutions,hydrogen tech interview,fuel cell world record,advanced energy materials