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Chemistry of Membranes Used in Fuel Cells : Degradation and Stabilization by Shulamith Schlick (2018, Hardcover)

Chemistry of Membranes Used in Fuel Cells : Degradation and Stabilization by Shulamith Schlick (2018, Hardcover)

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Description

The seller has not provided a description for this item. Contact them with any questions before purchasing.

Specifics

Author

Shulamith Schlick

Dewey Decimal

621.312429

Dewey Edition

23

Format

Hardcover

ISBN-10

1119196051

ISBN-13

9781119196051

Illustrated

Yes

Intended Audience

Scholarly & Professional

Item Height

1 in

Item Length

9.1 in

Item Weight

18.4 Oz

Item Width

6.2 in

LC Classification Number

TK2931.C464 2018

LCCN

2017-033953

Language

English

Number of Pages

304 Pages

Publication Name

Chemistry of Membranes Used in Fuel Cells : Degradation and Stabilization

Publication Year

2018

Publisher

Wiley & Sons, Incorporated, John

Subject

Physics / Polymer, Chemistry / Physical & Theoretical, General, Chemical & Biochemical, Power Resources / General, Chemistry / Industrial & Technical

Subject Area

Technology & Engineering, Science

Synopsis

Examines the important topic of fuel cell science by way of combining membrane design, chemical degradation mechanisms, and stabilization strategies This book describes the mechanism of membrane degradation and stabilization, as well as the search for stable membranes that can be used in alkaline fuel cells. Arranged in ten chapters, the book presents detailed studies that can help readers understand the attack and degradation mechanisms of polymer membranes and mitigation strategies. Coverage starts from fundamentals and moves to different fuel cell membrane types and methods to profile and analyze them. The Chemistry of Membranes Used in Fuel Cells: Degradation and Stabilization features chapters on: Fuel Cell Fundamentals: The Evolution of Fuel Cells and their Components; Degradation Mechanism of Perfluorinated Membranes; Ranking the Stability of Perfluorinated Membranes Used in Fuel Cells to Attack by Hydroxyl Radicals; Stabilization Mechanism of Perfluorinated Membranes by Ce(III) and Mn(II); Hydrocarbon Proton Exchange Membranes; Stabilization of Perfluorinated Membranes Using Nanoparticle Additives; Degradation Mechanism in Aquivion Perfluorinated Membranes and Stabilization Strategies; Anion Exchange Membrane Fuel Cells: Synthesis and Stability; In-depth Profiling of Degradation Processes in Nafion Due to Pt Dissolution and Migration into the Membrane; and Quantum Mechanical Calculations of the Degradation Mechanism in Perfluorinated Membranes. Brings together aspects of membrane design, chemical degradation mechanisms and stabilization strategies Emphasizes chemistry of fuel cells, which is underemphasized in other books Includes discussion of fuel cell performance and behavior, analytical profiling methods, and quantum mechanical calculations The Chemistry of Membranes Used in Fuel Cells is an ideal book for polymer scientists, chemists, chemical engineers, electrochemists, material scientists, energy and electrical engineers, and physicists. It is also important for grad students studying advanced polymers and applications., Examines the important topic of fuel cell science by way of combining membrane design, chemical degradation mechanisms, and stabilization strategies, This book describes the mechanism of membrane degradation and stabilization, as well as the search for stable membranes that can be used in alkaline fuel cells. Arranged in ten chapters, the book presents detailed studies that can help readers understand the attack and degradation mechanisms of polymer membranes and mitigation strategies. Coverage starts from fundamentals and moves to different fuel cell membrane types and methods to profile and analyze them. The Chemistry of Membranes Used in Fuel Cells: Degradation and Stabilization features chapters on: Fuel Cell Fundamentals: The Evolution of Fuel Cells and their Components; Degradation Mechanism of Perfluorinated Membranes; Ranking the Stability of Perfluorinated Membranes Used in Fuel Cells to Attack by Hydroxyl Radicals; Stabilization Mechanism of Perfluorinated Membranes by Ce(III) and Mn(II); Hydrocarbon Proton Exchange Membranes; Stabilization of Perfluorinated Membranes Using Nanoparticle Additives; Degradation Mechanism in Aquivion Perfluorinated Membranes and Stabilization Strategies; Anion Exchange Membrane Fuel Cells: Synthesis and Stability; In-depth Profiling of Degradation Processes in Nafion Due to Pt Dissolution and Migration into the Membrane; and Quantum Mechanical Calculations of the Degradation Mechanism in Perfluorinated Membranes. Brings together aspects of membrane design, chemical degradation mechanisms and stabilization strategies, Emphasizes chemistry of fuel cells, which is underemphasized in other books, Includes discussion of fuel cell performance and behavior, analytical profiling methods, and quantum mechanical calculations, The Chemistry of Membranes Used in Fuel Cells is an ideal book for polymer scientists, chemists, chemical engineers, electrochemists, material scientists, energy and electrical engineers, and physicists. It is also important for grad students studying advanced polymers and applications., Examines the important topic of fuel cell science by way of combining membrane design, chemical degradation mechanisms, and stabilization strategies This book describes the mechanism of membrane degradation and stabilization, as well as the search for stable membranes that can be used in alkaline fuel cells.

TitleLeading

The

Type

Textbook

brand

Wiley & Sons, Incorporated, John

gtin13

9781119196051