This book explores the experimental and computational analysis of nanocomposite electrode materials for lithium-ion batteries used in renewable energy storage systems. The study focuses on the development and characterization of lithium metal phosphate-based cathode materials , along with their carbon nanocomposites. Various synthesis methods, structural and electrochemical characterization techniques, and computational simulations were employed to evaluate battery performance, conductivity, discharge capacity, and stability. The work highlights how nanocomposite engineering and elemental substitution improve electrochemical efficiency and energy storage capabilities, while also comparing theoretical simulations with experimental findings to advance the design of high-performance lithium-ion battery materials for sustainable energy applications.
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