This contributed volume provides a comprehensive understanding of synthetic protocols, characterization techniques, and current applications of iron oxide-based nanocomposite and nanoenzyme materials. It covers basic concepts and recent advancements in iron oxide-based nanocomposites and nanoenzymes
Oxide-Based Materials and Structures-Fundamentals and Applications
โ Scribed by Rada Savkina (Editor); Larysa Khomenkova (Editor)
- Publisher
- CRC Press
- Year
- 2020
- Leaves
- 271
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Oxide-based materials and structures are becoming increasingly important in a wide range of practical fields including microelectronics, photonics, spintronics, power harvesting, and energy storage in addition to having environmental applications. This book provides readers with a review of the latest research and an overview of cutting-edge patents received in the field.
It covers a wide range of materials, techniques, and approaches that will be of interest to both established and early-career scientists in nanoscience and nanotechnology, surface and material science, and bioscience and bioengineering in addition to graduate students in these areas.
Features:
- Contains the latest research and developments in this exciting and emerging field
- Explores both the fundamentals and applications of the research
- Covers a wide range of materials, techniques, and approaches
โฆ Table of Contents
Chapter 1. Oxide-based Materials and Structures: General Remarks
Chapter 2. Optical Characterization of Oxide-based Materials using Ellipsometry
Chapter 3. Electrical Characterization of Oxide-based Materials using Impedance Spectroscopy
Chapter 4. Analytical Techniques for Characterization of Oxide-based Materials
Chapter 5. Low Dimensional Structures of SnO2, TiO2 and In2O3 with Applications of Technological Interest
Chapter 6. Transition Metal Oxides for Magnetic and Energy Applications
Chapter 7. Phonon and Plasmon-phonon Interactions in ZnO Single Crystals and Thin Films
Chapter 8. Zinc Oxide Grown by Atomic Layer Deposition โ AVersatile Material for Microelectronics
Chapter 9. Wide and Ultrawide Bandgap Oxides for Photovoltaics and Photonics
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