“Nitrogen-doped Graphene Nanomaterials for Electrochemical Systems: Fundamentals and Applications“
Eon Soo Lee, and Niladri Talukder (2026/06)
Book – Monograph
Publisher: Springer Nature
Softcover ISBN: 978-981-95-9755-0,
Hardcover ISBN: 978-981-95-9752-9;
eBook ISBN: 978-981-95-9753-6
Number of Pages: 393

About this book:
This book presents a comprehensive exploration of nitrogen-doped graphene (N-G), highlighting its structure, synthesis, properties, performance, and wide-ranging applications. It’s composed of 4 Parts and 13 Chapters.
Part I establishes the fundamental understanding of N-G by discussing its physical and chemical characteristics, synthesis approaches, electrochemical behavior, and degradation mechanisms. By connecting theoretical concepts with practical insights, this section provides a strong foundation for the topics that follow.
Part II focuses on N-G composites with metal-organic frameworks (MOFs), examining their composition, fabrication strategies, and electrochemical activities. It also highlights the promising roles of N-G/MOF composites in catalysis, energy storage, sensing technologies, and biomedical applications.
In Part III, the discussion expands to N-G-based composites formed with a broad range of materials, including metallic and non-metallic substances. These chapters illustrate how different synthesis strategies and material combinations can be used to develop advanced composites with enhanced functional performance across multiple application areas.
Part IV explores the broader impact of N-doped graphene in emerging technologies, particularly in energy conversion and storage systems. Applications in fuel cells, batteries, supercapacitors, water electrolysis, water purification, and biomedical fields demonstrate the versatility of N-G as a platform material for addressing current energy, environmental, and technological challenges.
Overall, this book portrays nitrogen-doped graphene as a highly promising material for innovation in advanced functional materials. Designed for researchers, students, and professionals, it offers valuable insights into the diverse capabilities, composite strategies, and future application potential of N-G-based materials.
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