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Nanostructured Materials for Next-Generation Energy Storage and Conversion
  • Language: en
  • Pages: 593

Nanostructured Materials for Next-Generation Energy Storage and Conversion

  • Type: Book
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  • Published: 2018-04-17
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  • Publisher: Springer

The energy crisis and pollution have posed significant risks to the environment, transportation, and economy over the last century. Thus, green energy becomes one of the critical global technologies and the use of nanomaterials in these technologies is an important and active research area. This book series presents the progress and opportunities in green energy sustainability. Developments in nanoscaled electrocatalysts, solid oxide and proton exchange membrane fuel cells, lithium ion batteries, and photovoltaic techniques comprise the area of energy storage and conversion. Developments in carbon dioxide (CO2) capture and hydrogen (H2) storage using tunable structured materials are discussed. Design and characterization of new nanoscaled materials with controllable particle size, structure, shape, porosity and band gap to enhance next generation energy systems are also included. The technical topics covered in this series are metal organic frameworks, nanoparticles, nanocomposites, proton exchange membrane fuel cell catalysts, solid oxide fuel cell electrode design, trapping of carbon dioxide, and hydrogen gas storage.

Fundamental Understanding of Electrode Processes in Memory of Professor Ernest B. Yeager
  • Language: en
  • Pages: 410
Micropower and Microdevices
  • Language: en
  • Pages: 244

Micropower and Microdevices

"Sponsoring divisions, Energy Technology, Battery, Dielectric Science and Technology, Electronics."

PEM Fuel Cell Failure Mode Analysis
  • Language: en
  • Pages: 366

PEM Fuel Cell Failure Mode Analysis

  • Type: Book
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  • Published: 2011-08-25
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  • Publisher: CRC Press

PEM Fuel Cell Failure Mode Analysis presents a systematic analysis of PEM fuel cell durability and failure modes. It provides readers with a fundamental understanding of insufficient fuel cell durability, identification of failure modes and failure mechanisms of PEM fuel cells, fuel cell component degradation testing, and mitigation strategies against degradation. The first several chapters of the book examine the degradation of various fuel cell components, including degradation mechanisms, the effects of operating conditions, mitigation strategies, and testing protocols. The book then discusses the effects of different contamination sources on the degradation of fuel cell components and ex...

Solid-state Ionic Devices III
  • Language: en
  • Pages: 554

Solid-state Ionic Devices III

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Transparent Oxide Electronics
  • Language: en
  • Pages: 348

Transparent Oxide Electronics

Transparent electronics is emerging as one of the most promising technologies for the next generation of electronic products, away from the traditional silicon technology. It is essential for touch display panels, solar cells, LEDs and antistatic coatings. The book describes the concept of transparent electronics, passive and active oxide semiconductors, multicomponent dielectrics and their importance for a new era of novel electronic materials and products. This is followed by a short history of transistors, and how oxides have revolutionized this field. It concludes with a glance at low-cost, disposable and lightweight devices for the next generation of ergonomic and functional discrete de...

Rechargeable Lithium and Lithium Ion Batteries
  • Language: en
  • Pages: 221

Rechargeable Lithium and Lithium Ion Batteries

The papers included in this issue of ECS Transactions were originally presented in the symposium ¿Rechargeable Lithium and Lithium Ion Batteries¿, held during the PRiME 2008 joint international meeting of The Electrochemical Society and The Electrochemical Society of Japan, with the technical cosponsorship of the Japan Society of Applied Physics, the Korean Electrochemical Society, the Electrochemistry Division of the Royal Australian Chemical Institute, and the Chinese Society of Electrochemistry. This meeting was held in Honolulu, Hawaii, from October 12 to 17, 2008.

Nano-electrocatalyst for Oxygen Reduction Reaction
  • Language: en
  • Pages: 350

Nano-electrocatalyst for Oxygen Reduction Reaction

  • Type: Book
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  • Published: 2024-06-21
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  • Publisher: CRC Press

Global warming switches our reliance from fossil fuels to green, sustainable renewable energy sources. Because of its promising nature, high-efficiency nano-electrocatalysts have sparked interest in renewable energy. Hydrogen fuel cell/polymer electrolyte membrane (PEM) vehicles are the most environmentally conscious electromobility vehicles, with a high energy density and quick refuelling technology, prompting the auto industry to launch a variety of PEM fuel cell vehicles around the world. Oxygen reduction reaction (ORR) primary research interests include fuel cells and metal-air batteries. The sluggish kinetic reaction of ORR, which is responsible for the rate-limiting reaction at the PEM fuel cell cathodic system, further decreases energy efficiency. Optimising ORR for market expansion with cost-effective and efficient nano-electrocatalysts, on the other hand, remains a challenge. The book covers fundamental ORR reaction kinetics theories, tools, and techniques. It also explains the nano electrocatalysts for ORR made of noble, non-noble, and nanocarbon materials. Finally, the book explores the applications of PEM fuel cells and metal-air batteries.

Multi-functional Electrocatalysts
  • Language: en
  • Pages: 562

Multi-functional Electrocatalysts

Multi-functional electrocatalysts are highly unique in that they display features that include the presence of multiple active sites that can simultaneously catalyse two or more different electrochemical reactions. They are particularly crucial for solving several pressing challenges and consequently are a priority in developing contemporary sustainable energy conversion and storage systems, such as fuel cells, metal–air batteries and electrolysers for green hydrogen production. This book will serve as a valuable reference for graduate students, researchers, and industrial practitioners working on electrochemical energy storage and conversion, electrocatalysis, materials chemistry and green hydrogen technologies.

Carbon Nanostructures for Energy Conversion
  • Language: en
  • Pages: 37

Carbon Nanostructures for Energy Conversion

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