Description

Proton conduction can be found in many different solid materials, from organic polymers at room temperature to inorganic oxides at high temperature. Solid state proton conductors are of central interest for many technological innovations, including hydrogen and humidity sensors, membranes for water electrolyzers and, most importantly, for high-efficiency electrochemical energy conversion in fuel cells.

Focusing on fundamentals and physico-chemical properties of solid state proton conductors, topics covered include:

  • Morphology and Structure of Solid Acids
  • Diffusion in Solid Proton Conductors by Nuclear Magnetic Resonance Spectroscopy
  • Structure and Diffusivity by Quasielastic Neutron Scattering
  • Broadband Dielectric Spectroscopy
  • Mechanical and Dynamic Mechanical Analysis of Proton-Conducting Polymers
  • Ab initio Modeling of Transport and Structure
  • Perfluorinated Sulfonic Acids
  • Proton-Conducting Aromatic Polymers
  • Inorganic Solid Proton Conductors

Uniquely combining both organic (polymeric) and inorganic proton conductors, Solid State Proton Conductors: Properties and Applications in Fuel Cells provides a complete treatment of research on proton-conducting materials.

Solid State Proton Conductors: Properties and Applications in Fuel Cells

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£137.95

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Hardback by Philippe Knauth , Maria Luisa Di Vona

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Proton conduction can be found in many different solid materials, from organic polymers at room temperature to inorganic oxides at... Read more

    Publisher: John Wiley & Sons Inc
    Publication Date: 03/02/2012
    ISBN13: 9780470669372, 978-0470669372
    ISBN10: 0470669373

    Number of Pages: 426

    Non Fiction , Technology, Engineering & Agriculture , Education

    Description

    Proton conduction can be found in many different solid materials, from organic polymers at room temperature to inorganic oxides at high temperature. Solid state proton conductors are of central interest for many technological innovations, including hydrogen and humidity sensors, membranes for water electrolyzers and, most importantly, for high-efficiency electrochemical energy conversion in fuel cells.

    Focusing on fundamentals and physico-chemical properties of solid state proton conductors, topics covered include:

    • Morphology and Structure of Solid Acids
    • Diffusion in Solid Proton Conductors by Nuclear Magnetic Resonance Spectroscopy
    • Structure and Diffusivity by Quasielastic Neutron Scattering
    • Broadband Dielectric Spectroscopy
    • Mechanical and Dynamic Mechanical Analysis of Proton-Conducting Polymers
    • Ab initio Modeling of Transport and Structure
    • Perfluorinated Sulfonic Acids
    • Proton-Conducting Aromatic Polymers
    • Inorganic Solid Proton Conductors

    Uniquely combining both organic (polymeric) and inorganic proton conductors, Solid State Proton Conductors: Properties and Applications in Fuel Cells provides a complete treatment of research on proton-conducting materials.

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