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With their adaptability and broad applicability, quantum dots have become an increasingly important tool for the development of new materials, approaches and applications across a wide range of fields. Understanding the molecular fundamentals governing their structures, interactivity and behaviors can provide a unique insight for researchers and help them design and apply quantum dots in novel ways. Quantum Dots: Fundamentals, Synthesis and Applications compiles such key information with practical guidance on quantum dot synthesis and applications. Beginning with an introduction to quantum dots, Part 1 highlights such foundational knowledge as growth mechanisms, shape and composition, electrochemical properties, and production scale-up for quantum dots. Part 2 goes on to provide practical guides to key chemical, physical and biological methods for the synthesis of quantum dots, before Part 3 reviews the application of quantum dots a range of important applications, including photocatalysis, energy cells and medical imaging. Drawing on the knowledge of its expert authors, Quantum Dots: Fundamentals, Synthesis and Applications provides practical guidance for all those who already study, develop or use quantum dots in their work, and is a great introduction for anyone who would like to start doing so. Presents foundational information needed to effectively understand and manipulate quantum dot properties Consolidates key methods of quantum dot synthesis in a single volume Reviews both current and future practical applications of quantum dots across a range of important fields