A Themed Issue of Functional Molecule-based Magnets: Dedicated to Professor Masahiro Yamashita on the Occasion of his 65th Birthday
Research on molecule-based magnetic materials was systematized in the 1980s and expanded rapidly. A Special Issue focusing on molecule-based magnetic substances was published in Magnetochemistry. However, the functionalities of the substances increase daily; therefore, the researchers’ quest is not...
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Year of Publication: | 2020 |
Language: | English |
Physical Description: | 1 electronic resource (134 p.) |
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100 | 1 | |a Katoh, Keiichi |4 auth | |
245 | 1 | 0 | |a A Themed Issue of Functional Molecule-based Magnets: Dedicated to Professor Masahiro Yamashita on the Occasion of his 65th Birthday |
246 | |a Themed Issue of Functional Molecule-based Magnets | ||
246 | |a A Themed Issue of Functional Molecule-based Magnets | ||
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300 | |a 1 electronic resource (134 p.) | ||
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520 | |a Research on molecule-based magnetic materials was systematized in the 1980s and expanded rapidly. A Special Issue focusing on molecule-based magnetic substances was published in Magnetochemistry. However, the functionalities of the substances increase daily; therefore, the researchers’ quest is not yet in decline. Research on molecule-based magnetism developed across many fields, including chemistry, physics, material chemistry, and applied physics, and the use of the various functionalities of these molecule-based magnetic substances has greatly influenced research on spin-based devices. In honor of Professor Masahiro Yamashita, who contributed greatly to this field, I have put together a Special Issue that highlights ten groundbreaking articles. The issue is entitled, “A Themed Issue of Functional Molecule-Based Magnets: Dedicated to Professor Masahiro Yamashita on the Occasion of his 65th Birthday”. I wish to thank the authors for their dedicated work, and the referees and editorial staff for the time they invested commenting on the articles. | ||
546 | |a English | ||
653 | |a pressure effect | ||
653 | |a slow magnetic relaxation | ||
653 | |a graphene oxide | ||
653 | |a mixed metal Co/Ln clusters | ||
653 | |a X-ray diffraction | ||
653 | |a magnetism | ||
653 | |a AC susceptibility | ||
653 | |a two-dimensional (2D) ferrimagnets | ||
653 | |a cobalt | ||
653 | |a coordination clusters | ||
653 | |a lanthanides | ||
653 | |a DFT calculation | ||
653 | |a long-range magnetic ordering | ||
653 | |a iron complex | ||
653 | |a single-molecule magnets | ||
653 | |a lanthanide complex | ||
653 | |a coordination polymers | ||
653 | |a octacyanidoniobate(IV) | ||
653 | |a ferromagnetism | ||
653 | |a nickel(II) | ||
653 | |a heterometallic layers | ||
653 | |a single-molecule magnet | ||
653 | |a spin crossover | ||
653 | |a high pressure | ||
653 | |a molecule-based magnets | ||
653 | |a chloranilato | ||
653 | |a [2 | ||
653 | |a crystal structure | ||
653 | |a lanthanide ions | ||
653 | |a honeycomb layers | ||
653 | |a 3d/4f metal clusters | ||
653 | |a di-2 pyridyl ketone | ||
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