
Solid State Electrochemistry: Principles of Ionic Conductivity in Ceramic, Glassy and Polymer Electrolytes by Peter G. B
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Product Description
Introduction
Solid State Electrochemistry by Peter G. Bruce is a definitive reference for students, researchers, and professionals seeking a deep understanding of the principles governing ionic and electronic transport in solid materials. Published by Cambridge University Press, this hardbound edition is an essential resource for Indian academic libraries, university courses, and research labs focusing on materials science, electrochemistry, and solid-state chemistry.
Book Overview
This book presents a modern and comprehensive treatment of solid-state electrochemistry, distinct from earlier texts that merely catalogued materials. Instead, it builds a foundational understanding of the fundamental principles that drive ionic conductivity, intercalation reactions, and electrode–electrolyte interfaces in solids. The author systematically covers ceramic electrolytes, glassy electrolytes, polymer electrolytes, intercalation electrodes, and the critical interfaces between solid electrolytes and electrodes. The text bridges the gap between classical liquid-phase electrochemistry and the unique behaviour of solid-state systems, making it invaluable for advanced undergraduate courses and postgraduate research.
Key Highlights
- First modern text to focus on the fundamental principles of solid-state electrochemistry rather than just material descriptions.
- Comprehensive coverage of ceramic, glassy, and polymer electrolytes with a clear explanation of their distinct conduction mechanisms.
- In-depth treatment of intercalation reactions, including thermodynamics and kinetics, essential for battery and energy storage research.
- Detailed discussion of solid electrolyte–electrode interfaces, contrasting them with conventional liquid electrolyte systems.
- Authored by Peter G. Bruce, a leading authority in the field, ensuring authoritative and reliable content.
Inside the Book
The book is structured to guide readers from basic concepts to advanced applications. Early chapters establish the theoretical framework of ionic transport in crystalline and amorphous solids. Subsequent sections explore the unique properties of polymer electrolytes and the dynamics of intercalation electrodes. A dedicated chapter on interfaces provides critical insights into charge transfer and stability at solid–solid boundaries. The final chapters discuss practical applications, including batteries, sensors, and other electrochemical devices, making the content highly relevant for Indian researchers working on energy storage solutions.
Key Topics
- Ionic conductivity in ceramic (solid) electrolytes
- Glassy electrolytes: structure and transport
- Polymer electrolytes: mechanisms and applications
- Intercalation electrodes: thermodynamics and kinetics
- Solid electrolyte–electrode interfaces
- Comparison with liquid-state electrochemistry
- Applications in batteries, fuel cells, and sensors
Reader Benefits
Readers will gain a rigorous understanding of how ions move through solids, the factors that influence conductivity, and how these principles are applied in real-world devices. The book equips students with the conceptual tools needed to interpret experimental data and design new materials. For researchers, it offers a solid foundation for exploring advanced topics like all-solid-state batteries, supercapacitors, and electrochemical sensors. The clear, logical presentation makes complex topics accessible, even for those new to the field.
Learning Outcomes
- Explain the fundamental mechanisms of ionic conduction in crystalline, glassy, and polymer electrolytes.
- Analyse the thermodynamics and kinetics of intercalation reactions in electrode materials.
- Compare and contrast solid-state electrochemistry with conventional liquid-phase systems.
- Evaluate the role of interfaces in determining device performance and stability.
- Identify key applications of solid electrolytes in modern energy technologies.
Who Should Read
This book is ideal for postgraduate students and researchers entering the field of solid-state electrochemistry for the first time. It is also highly suitable for advanced undergraduate courses in chemistry, physics, and materials science. Indian students preparing for competitive exams or pursuing research in battery technology, fuel cells, or electrochemical sensors will find the content directly applicable. Professionals in the energy storage industry and academic faculty looking for a reliable teaching resource will also benefit greatly.
About the Author
Peter G. Bruce is a distinguished scientist and professor known for his pioneering contributions to solid-state electrochemistry and energy storage. His research has significantly advanced the understanding of ionic transport in solids and the development of next-generation batteries. He has authored numerous high-impact publications and is widely regarded as a leading authority in the field.
About the Publisher
Cambridge University Press is a globally respected academic publisher with a long history of producing authoritative textbooks and reference works in science, technology, and mathematics. Their rigorous editorial standards ensure that every title meets the highest academic benchmarks, making them a trusted source for students and researchers worldwide.
Conclusion
Solid State Electrochemistry is an indispensable resource for anyone seeking a principled understanding of this rapidly evolving field. Whether you are a student embarking on a research career or a professional looking to deepen your knowledge, this book provides the clarity, depth, and authority you need. Order your hardcover copy from Bookshops.in today and build a solid foundation in solid-state electrochemistry.
Quick Summary
Solid State Electrochemistry by Peter G. Bruce is a foundational textbook that introduces the fundamental principles governing ionic transport in solid materials. Unlike other books that merely catalogue materials, this work delves into the mechanisms of ionic conductivity across three major classes of solid electrolytes: ceramics, glasses, and polymers. It also covers the thermodynamics and kinetics of intercalation reactions, which are crucial for understanding battery electrodes. A unique feature is the detailed comparison of solid electrolyte/electrode interfaces with traditional liquid electrochemistry, highlighting the distinct behaviour of solid-state systems. The book is intended for postgraduate students and researchers entering the field, providing them with the essential theoretical framework needed for advanced study or industrial work. By reading this book, learners will gain a deep understanding of how ions move in solids, how intercalation processes work, and why solid-state devices differ from their liquid counterparts. Purchasing from Bookshops.in ensures you receive a genuine hardcover edition with fast delivery across India, backed by reliable customer service.
Book Highlights
Book Specifications
| ISBN-13 | 9780521599498 |
| ISBN-10 | 0521599490 |
| Publisher | Cambridge University Press |
| Language | English |
| Dimensions | 15.24 x 2.31 x 22.86 cm |
| Weight | 530 g |
| Country | India |
| Category | Science & Mathematics › Chemistry |
| Genre | Science & Mathematics |
| Original Language | English |
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