Solid State Materials Chemistry A modern and thorough treatment of the field for upper-level undergraduate and graduate courses in materials science and chemistry. Patrick M. Woodward (Author), Pavel Karen (Author), John S. O. Evans (Author), Thomas Vogt (Author) 9780521873253, Cambridge University Press Hardback, published 1 April 2021 708 pages25.3 x 19.6 x 3.6 cm, 1.67 kg 'The book offers a comprehensive and insightful exploration of the subject matter, with well-researched and thoughtfully presented topics. The clear structure and appealing design facilitate an engaging reading experience. The format is user-friendly, making the content accessible for students.' Fabian Martinez, University of California, San Diego This comprehensive textbook provides a modern, self-contained treatment for upper undergraduate and graduate level students. It emphasizes the links between structure, defects, bonding, and properties throughout, and provides an integrated treatment of a wide range of materials, including crystalline, amorphous, organic and nano- materials. Boxes on synthesis methods, characterization tools, and technological applications distil specific examples and support student understanding of materials and their design. The first six chapters cover the fundamentals of extended solids, while later chapters explore a specific property or class of material, building a coherent framework for students to master core concepts with confidence, and for instructors to easily tailor the coverage to fit their own single semester course. With mathematical details given only where they strengthen understanding, 400 original figures and over 330 problems for hands-on learning, this accessible textbook is ideal for courses in chemistry and materials science. 1. Structures of Crystalline Materials 2. Defects and More Complex Structures 3. Defect Chemistry and Nonstoichiometry 4. Phase Diagrams and Phase Transitions 5. Chemical Bonding 6. Electronic Band Structure 7. Optical Materials 8. Dielectrics and Nonlinear Optical Materials 9. Magnetic Materials 10. Conducting Materials 11. Magnetotransport Materials 12. Superconductivity 13. Energy Materials: Ionic Conductors, Mixed Conductors and Intercalation Chemistry 14. Zeolites, Porous and Framework Materials 15. Amorphous and Disordered Materials. Subject Areas: Materials science [TGM], Mechanical engineering & materials [TG], Solid state chemistry [PNRS], Physical chemistry [PNR], Condensed matter physics [liquid state & solid state physics PHFC], Materials / States of matter [PHF]