
- 275 pages
- English
- PDF
- Available on iOS & Android
Electrospinning for Proton Exchange Membrane Fuel Cells
About this book
Comprehensive reference on the design, characteristics, performance, and development potential of key components of PEMFC through electrospinning technologies
Electrospinning for Proton Exchange Membrane Fuel Cells discusses the use of electrospun materials in preparing next-generation fuel cell proton-conducting membranes, comprehensively reviewing the essential parts of proton exchange membrane fuel cell (PEMFC) components including the catalyst layer, gas diffusion layer, and proton exchange membrane. The book covers both electrochemical methods and hands-on experimental processes and provides a perspective of hydrogen fuel and PEMFC vehicles in the transformation of low-carbon energy.
Electrospinning for Proton Exchange Membrane Fuel Cells includes information on:
- Working principles, current state of research, and existing obstacles of PEMFC components, as well as the role of electrospinning and nanofibers in PEMFC
- Physical properties and electrochemical polarization of the nanofiber catalyst layer prepared by electrospinning
- Water management ability of fuel cells under high inlet humidity
- Cold starting ability and performance aging of PEMFC through the electrospun microporous layer under high current density
- Experimental devices for the study of the electrospun proton exchange membrane and composite proton exchange membrane
Electrospinning for Proton Exchange Membrane Fuel Cells is an excellent reference on the subject for materials scientists, catalytic chemists, polymer chemists, electrochemists, and electronics engineers.
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Information
Table of contents
- Cover
- Title Page
- Copyright
- Contents
- About the Authors
- Preface
- Acknowledgment
- Chapter 1 Introduction to Proton Exchange Membrane Fuel Cells
- Chapter 2 Classification of Catalyst for Proton Exchange Membrane Fuel Cell
- Chapter 3 Electrospun Catalyst Layer for Proton Exchange Membrane Fuel Cell
- Chapter 4 Analysis of Nanofiber Catalyst Layers Performance Under Various Temperature and Humidity Conditions
- Chapter 5 The Role and Performance of Gas Diffusion Layers in Proton Exchange Membrane Fuel Cell
- Chapter 6 Preparation of Gradient Gas Diffusion Layer Process and Their Performance in Fuel Cell
- Chapter 7 Impact of Optimizing the Thickness Direction of Gradient Gas Diffusion Layer on WaterāGas Management Capability of the Fuel Cell
- Chapter 8 Study on the Effect of Gradient Hydrophobic Treatment of Gas Diffusion Layer on Water Management Performance in Fuel Cells
- Chapter 9 Fundamentals of Proton Exchange Membranes
- Chapter 10 Design of Proton Exchange Membrane
- Chapter 11 Highly Sulfonated Poly(Ether Ether Ketone) Nanofibers Constructed Plasmonic Transport Channels
- Chapter 12 PolydopamineāModified Halloysite Nanotube/Sulfonated Poly(Ether Ether Ketone) CrossāLinked Composite Membrane
- Chapter 13 Construction of Ordered Proton Transport Channels with Phosphotungstic Acid Modified Magnetic Nanoparticles
- Chapter 14 Chemical Covalent Bonding of Silicotungstic Acid Proton Exchange Membrane
- Index
- EULA