This book offers a thorough and accessible introduction to the physics and chemistry of glasses, covering both fundamental principles and practical applications. Aimed at undergraduate and graduate students, researchers, and professionals, it explores the structure, formation, and diverse properties of glasses, with a strong focus on real-world laboratory practices and challenges. Topics include fundamentals of the glassy state, glass formation theories, glass preparation, phase separation, thermal and mechanical behaviour, viscoelasticity, transport properties, optical characteristics, and advanced vibrational spectroscopic techniques such as FTIR and Raman. The book also focuses on various glass categories, including oxide, fluoride, tellurite, and chalcogenide systems, and highlights their relevance in cutting-edge technologies like fiber optics and laser applications. Distinctively, it incorporates real experimental data and practical guidance, making it a valuable resource for those seeking to bridge theoretical knowledge with experimental glass science and materials innovation.
This book offers a thorough and accessible introduction to the physics and chemistry of glasses, covering both fundamental principles and practical applications. Aimed at undergraduate and graduate students, researchers, and professionals, it explores the structure, formation, and diverse properties of glasses, with a strong focus on real-world laboratory practices and challenges. Topics include fundamentals of the glassy state, glass formation theories, glass preparation, phase separation, thermal and mechanical behaviour, viscoelasticity, transport properties, optical characteristics, and advanced vibrational spectroscopic techniques such as FTIR and Raman. The book also focuses on various glass categories, including oxide, fluoride, tellurite, and chalcogenide systems, and highlights their relevance in cutting-edge technologies like fiber optics and laser applications. Distinctively, it incorporates real experimental data and practical guidance, making it a valuable resource for those seeking to bridge theoretical knowledge with experimental glass science and materials innovation.
Pantelis Bourazanis
glass physics glass chemistry amorphous materials glass structure thermal properties mechanical properties optical properties