Description
Nanoengineered Materials for Sustainable Green Energy Technologies
This book explores how advanced nano-designed materials can improve the efficiency, performance, and sustainability of existing renewable energy systems. It examines the latest research developments and emerging trends in nanotechnology-driven energy solutions, highlighting how innovative materials can contribute to a cleaner and more sustainable energy future.
The book covers a broad range of topics, including:
- The development, electronic properties, sustainable design approaches, and applications of carbon nanomaterials in green energy generation and storage systems
- The role of carbon nanostructures in fuel cells and methods for evaluating their environmental impact and long-term sustainability
- Recent advances in nanomaterials for lithium-ion batteries, including strategies for improving battery performance, capacity, durability, and efficiency
- The design and development of nano-enhanced solar cells, examining their advantages, limitations, and future opportunities
Beyond introducing fundamental concepts and material synthesis techniques, this book highlights the practical applications of carbon nanotubes (CNTs) and other nanostructured materials in modern energy technologies. It also addresses important challenges, including environmental considerations, large-scale manufacturing, material stability, and long-term reliability.
By combining insights from nanotechnology, materials science, and renewable energy research, this book demonstrates how nanoengineering can help create energy systems that are more efficient, cost-effective, durable, and environmentally friendly. It provides valuable knowledge for researchers, engineers, students, and professionals working toward the advancement of sustainable energy technologies worldwide.







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