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Nanoengineered Materials for Solid Oxide Cells

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05 April 2023

The nanoengineering of materials used for solid oxide cells has emerged as a versatile tool for achieving high-performance components with far superior properties compared to conventional materials. With chapters contributed by leading scientific experts from various fields, this reference text features detailed reviews of the latest scientific and technological advances in the nanoengineering of materials, including the challenges encountered over the last decade. The book covers the accumulated scientific advances and cross-cutting technologies employed for the fabrication, characterization, and utilization of a wide range of nanostructured materials. Topics include advanced fabrication processes of thin film electrodes and interlayers, novel cell structures, and advanced characterization tools used to elucidate fundamental mechanisms at the nanoscale level.
Key Features
- Covers the latest advances in the nanoengineering of materials, with a focus on components in solid oxide cells (SOFC and SOEC)
- Focuses on issues and challenges for integrating the nanoengineering approach for practical cells
- Covers novel fabrication techniques applicable to a variety of materials used for energy conversion technologies
- Features advanced characterization tools for examining material properties at the nanoscale
- Contributes to an awareness of the methods that can be used to integrate nanomaterials into practical devices

TECHNOLOGY & ENGINEERING / Power Resources / Alternative & Renewable, Energy, power generation, distribution and storage, TECHNOLOGY & ENGINEERING / Materials Science / General, TECHNOLOGY & ENGINEERING / Nanotechnology & MEMS, Materials science, Nanotechnology

Chapter 2:
This project has received funding from the European Union’s Horizon 2020 research and innovation program under grant agreement No 824072 (HARVESTORE), No 681146 and No 101017709 (EPISTORE).
Preface
Acknowledgement
List of contributors
Editor biography
Author biographies
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Advances in nanoengineered air electrodes: towards high performance solid oxide cells
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Recent advances in the understanding of the influence of surface chemistry and microstructure on the functional properties of solid oxide cell air electrodes
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Tuning heterointerfaces for high-performance solid oxide cells
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Interface engineering for highly active and stable solid oxide cell electrodes
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Nanostructuring the electrodes of solid oxide cell via atomic layer deposition
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Novel electrode materials and nano-oxide composite electrolytes
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Tailoring nanostructured fuel electrode materials for solid oxide cells through redox exsolution
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Engineering nanostructured fuel electrodes for high-performance, durable SOCs through infiltration
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The design and modification of the microstructure of solid oxide cell electrodes to enhance electrochemical performance (the use of anisotropic microstructures to modify electrodes)
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Synchrotron x-ray radiation for solid oxide cells material characterization