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Nanotechnology Fuel Cells
Coles
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Nanotechnology Fuel Cells in Vernon, BC
By None
Current price: $203.19
Original price: $254.00

Coles
Nanotechnology Fuel Cells in Vernon, BC
By None
Current price: $203.19
Original price: $254.00
Loading Inventory...
Size: Kobo eBook
*Product information may vary - to confirm product availability, pricing, shipping and return information please contact Coles
Nanotechnology in Fuel Cells focuses on the use of nanotechnology in macroscopic and nanosized fuel cells to enhance their performance and lifespan. The book covers the fundamental design concepts and promising applications of nanotechnology-enhanced fuel cells and their advantages over traditional fuel cells in portable devices, including longer shelf life and lower cost. In the case of proton-exchange membrane fuel cells (PEMFCs), nano-membranes could provide 100 times higher conductivity of hydrogen ions in low humidity conditions than traditional membranes. For hydrogen fuel cell, nanocatalysts (Pt hybrid nanoparticles) could provide 12 times higher catalytic activity. This is an important reference source for materials scientists and engineers who are looking to understand how nanotechnology is being used to create more efficient macro- and nanosized fuel cells.
Outlines how fuel cells can be nanoengineered to enhance their performance and lifespan
Covers a variety of fuel cell types, including proton-exchange membrane fuel cells and hydrogen-based fuel cells
Assesses the major challenges of nanoengineering fuel cells at an industrial scale
Nanotechnology in Fuel Cells focuses on the use of nanotechnology in macroscopic and nanosized fuel cells to enhance their performance and lifespan. The book covers the fundamental design concepts and promising applications of nanotechnology-enhanced fuel cells and their advantages over traditional fuel cells in portable devices, including longer shelf life and lower cost. In the case of proton-exchange membrane fuel cells (PEMFCs), nano-membranes could provide 100 times higher conductivity of hydrogen ions in low humidity conditions than traditional membranes. For hydrogen fuel cell, nanocatalysts (Pt hybrid nanoparticles) could provide 12 times higher catalytic activity. This is an important reference source for materials scientists and engineers who are looking to understand how nanotechnology is being used to create more efficient macro- and nanosized fuel cells.
Outlines how fuel cells can be nanoengineered to enhance their performance and lifespan
Covers a variety of fuel cell types, including proton-exchange membrane fuel cells and hydrogen-based fuel cells
Assesses the major challenges of nanoengineering fuel cells at an industrial scale



















