Next Generation Phase Change Materials for Energy Storage : Fundamentals, Engineering, and Applications

7,000 TWD
Member Price
6,300
English

Product Description

Next Generation Phase Change Materials for Energy Storage: Fundamentals, Engineering, and Applications provides an in-depth exploration of cutting-edge phase change materials (PCMs), including salt hydrates, ionic liquids, porous-based composites, nanoengineered PCMs, and metal-organic frameworks, highlighting their synthesis, thermophysical properties, and how innovative modifications improve thermal conductivity, stability, and energy storage efficiency. Readers will gain insights into next-generation PCMs including photo-switchable, magnetically multifunctional, and thermo-responsive smart PCMs and how these advanced materials enable adaptive and on-demand thermal management, making them highly relevant for applications in energy storage, electronics, textiles, and biomedical fields. The book emphasizes eco-friendly and bioinspired PCM technologies, including nature-derived materials such as biopolymers and biochar composites. It provides solutions for key challenges in sustainable energy storage, exploring how nature-inspired microcapsules and hierarchical structures improve PCM stability, heat transfer, and environmental sustainability.

Provides an in-depth exploration of cutting-edge PCM materials, including salt hydrates, ionic liquids, porous-based composites, nano-engineered PCMs and metal-organic frameworks, highlighting their synthesis, thermophysical properties and how innovative modifications improve thermal conductivity, stability and energy storage efficiency. Readers will gain insights into next-generation PCMs including photo-switchable, magnetically multifunctional, and thermo-responsive smart PCMs and how these advanced materials enable adaptive and on-demand thermal management, making them highly relevant for applications in energy storage, electronics, textiles, and biomedical fields. The book emphasizes eco-friendly and bioinspired PCM technologies, including nature-derived materials such as biopolymers and biochar composites. Provides solutions for key challenges in sustainable energy storage, exploring how nature-inspired microcapsules and hierarchical structures improve PCM stability, heat transfer and environmental sustainability. Describes the practical implementation of PCMs, detailing their use in renewable energy systems, flexible electronics, 3D-printed PCM structures and wearable thermal management solutions, including fabrication techniques, scalability and real-world applications, providing valuable insights for researchers, engineer, and industry professionals.

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