Spins in solids or in molecules possess discrete energy levels, and the associated quantum states can be tuned and coherently manipulated by means of external electromagnetic …
AG Martynov, Y Horii, K Katoh, Y Bian, J Jiang… - Chemical Society …, 2022 - pubs.rsc.org
The unique properties of natural tetrapyrrolic compounds have inspired the rapid growth of research interest in the design and synthesis of artificial porphyrinoids and their metal …
Ever since the discovery and development of polyoxometalates (POMs), it has been known that they can exist in electron-rich reduced forms of different archetypes, structural …
Molecular magnetism, though distinctly a field within chemistry, encompasses much more than synthesis and has strong links with other disciplines across the physical sciences …
Lanthanide-based single-molecule magnets are leading materials for achieving magnetization blocking at the level of one molecule. In this paper, we examine the physical …
Over the past fifteen years or so, the study of f-element single-ion magnets (f-SIMs) has gone from being a sub-discipline of molecular magnetism to an established field of research in its …
JM Clemente-Juan, E Coronado… - Chemical Society …, 2012 - pubs.rsc.org
Magnetic polyoxometalates: from molecular magnetism to molecular spintronics and quantum computing - Chemical Society Reviews (RSC Publishing) DOI:10.1039/C2CS35205B …
Quantum control of individual spins in condensed-matter devices is an emerging field with a wide range of applications, from nanospintronics, to quantum computing. The electron …
K Bader, D Dengler, S Lenz, B Endeward… - Nature …, 2014 - nature.com
The successful development of a quantum computer would change the world, and current internet encryption methods would cease to function. However, no working quantum …