Multifunctional Coordination Complexes
Design Principles, Synthesis, Characterizations, and Applications
Series: Lecture Notes in Nanoscale Science and Technology;
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Product details:
- Publisher Springer Nature Switzerland
- Date of Publication 5 October 2026
- ISBN 9783032333018
- Binding Hardback
- No. of pages pages
- Size 235x155 mm
- Language English
- Illustrations Approx. 250 p. 700
Categories
Long description:
This book offers a comprehensive and forward-looking exploration of multifunctional coordination complexes, uniting molecular design, synthetic strategies, and advanced characterization techniques with practical performance insights. Covering the latest advances in photochromism, photomagnetism, long-lived phosphorescence, and electrocatalysis, it shows how light-responsive and catalytically active complexes are reshaping energy, environmental, and information technologies. Through detailed discussions of electron-transfer-type photochromic switches, photoresponsive molecular magnets for optically controlled data storage, persistent phosphorescent systems for imaging and anti-counterfeiting, and high-efficiency catalytic platforms, this book highlights the shared principles that underpin these transformative behaviors.
This book moves systematically from foundational concepts to real-world applications, guiding readers through synthesis, characterization, and performance studies across four major classes of functional complexes. Its fifteen chapters illuminate the interplay between structure, photophysics, magnetism, and catalytic activity, offering researchers a unified framework for designing smarter and more controllable materials. An essential reference for chemists, materials scientists, and nanotechnologists, it equips researchers, engineers, and graduate students to advance next-generation devices and sustainable technological solutions.
MoreTable of Contents:
Overview of Functional Complexes.- Synthesis of Electron-Transfer-Type Photochromic Complexes.- Design and Synthesis of Photoresponsive Molecular Magnets.- Synthesis of Long-Lived Phosphorescent Complexes.- Synthesis of Complex-Based Electrocatalytic Materials.- Characterization of Electron-Transfer-Type Photochromic Complexes.- Characterization of Photoresponsive Molecular Magnets.- Characterization of Long-Lived Phosphorescent Complexes.- Characterization of Complex-Based Electrocatalytic Materials.- Performance Studies of Electron-Transfer-Type Photochromic Complexes.- Performance Studies of Photoresponsive Molecular Magnets.- Performance Studies of Long-Lived Phosphorescent Complexes.-Performance Studies of Complex-Based Electrocatalytic Materials.- Applications of Long-Lived Phosphorescent Complexes.- Applications of Complex-Based Electrocatalytic Materials.-Future Outlook: Design, Regulation, and Engineering of Multifunctional Coordination Complexes.
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