Multifunctional Molecular Magnets Based on Octacyanidometalates
Autor Kenta Imotoen Limba Engleză Hardback – 16 aug 2017
This thesis demonstrates the novel magnetic functionalities in cyanido-bridged metal assemblies, and as such appeals to readers in the field of materials science. The utilization of octacyanidometalates as building blocks enables the observation of (i) photo-induced magnetization due to a light-induced spin-crossover in an iron octacyanidoniobate-based assembly, (ii) photo-induced magnetization with a two-step spin-crossover behavior in an iron octacyanidoniobate-based material, and (iii) the coexistence of super-ionic conductivity and metamagnetism in a manganese-octacyanoniobate system. These multi-functionalities are achieved by incorporating a spin-crossover moiety or a hydrogen-bonding network into a cyanido-bridged network structure with a strong magnetic interaction. In particular, in light-induced spin-crossover magnets, a magnetically non-ordered state can be altered to a magnetically ordered state by photo-irradiation, which is one of the attractive mechanisms for noveloptical switching devices.
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Specificații
ISBN-13: 9789811061349
ISBN-10: 9811061343
Pagini: 89
Ilustrații: XIII, 89 p. 64 illus., 38 illus. in color.
Dimensiuni: 161 x 244 x 15 mm
Greutate: 0.31 kg
Ediția:2017 edition
Editura: Springer Nature Singapore
Locul publicării:Singapore, Singapore
ISBN-10: 9811061343
Pagini: 89
Ilustrații: XIII, 89 p. 64 illus., 38 illus. in color.
Dimensiuni: 161 x 244 x 15 mm
Greutate: 0.31 kg
Ediția:2017 edition
Editura: Springer Nature Singapore
Locul publicării:Singapore, Singapore
Cuprins
1. Introduction.- 2. Light-induced Spin-crossover Magnetism in an Iron Octacyanidoniobate-based Assembly.- 3. Two-step Spin-crossover and Photo-induced Spin-crossover in an Iron Octacyanidoniobate-based Assembly.- 4. Observation of Coexistence of Super-ionic Conductivity and Metamagnetism in a Manganese Octacyanidoniobate-based Assembly.- 5. Summary and Perspective.
Textul de pe ultima copertă
This thesis demonstrates the novel magnetic functionalities in cyanido-bridged metal assemblies, and as such appeals to readers in the field of materials science. The utilization of octacyanidometalates as building blocks enables the observation of (i) photo-induced magnetization due to a light-induced spin-crossover in an iron octacyanidoniobate-based assembly, (ii) photo-induced magnetization with a two-step spin-crossover behavior in an iron octacyanidoniobate-based material, and (iii) the coexistence of super-ionic conductivity and metamagnetism in a manganese-octacyanoniobate system. These multi-functionalities are achieved by incorporating a spin-crossover moiety or a hydrogen-bonding network into a cyanido-bridged network structure with a strong magnetic interaction. In particular, in light-induced spin-crossover magnets, a magnetically non-ordered state can be altered to a magnetically ordered state by photo-irradiation, which is one of the attractive mechanisms for novel optical switching devices.
Caracteristici
Nominated by The University of Tokyo as an outstanding Ph.D. thesis Demonstrates the novel magnetic functionalities in cyanido-bridged metal assemblies Includes numerous step-by-step tutorials to help readers learn quickly Provides a detailed description of the principle and the experimental method Includes supplementary material: sn.pub/extras