Explore the electrochemical characterization of fuel cells before and after break-in and its critical importance in manufacturing diagnostics for the hydrogen revolution.
Discover how non-noble metal catalysts are replacing platinum in fuel cells, making clean energy more affordable and accessible through scientific innovation.
Explore how Cornell's Fuel Cell Institute is pioneering materials science to create the next generation of efficient, affordable fuel cells for clean energy.
Discover how blending ionomers with different equivalent weights is transforming fuel cell technology, enabling better performance across varying humidity conditions and accelerating the transition to clean energy.
Exploring the critical role of thermal conductivity in Gas Diffusion Layers for fuel cell performance and water management
Exploring the development of corrosion-resistant coatings for bipolar plates in PEM fuel cells - a comprehensive review of materials, methods, and performance metrics.
Discover how 4D in situ visualization is revolutionizing fuel cell membrane research by revealing the mechanical degradation processes in real-time.
Discover how Pt catalysts supported on Nb-SnO2/CeO2 are solving durability challenges in polymer electrolyte fuel cells for heavy-duty vehicles.
Explore how Pt-Co alloy catalysts are revolutionizing PEM fuel cell technology by enhancing durability and performance under cyclic potentials.
Discover how nitrogen-doped Pt-based core-shell catalysts are revolutionizing fuel cell technology by enhancing oxygen reduction reaction efficiency and reducing platinum dependency.