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Recent advances in dysprosium-based single molecule magnets: Structural overview and synthetic strategies

Peng Zhang, +2 more
- 01 Jun 2013 - 
- Vol. 257, Iss: 41955, pp 1728-1763
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TLDR
In this paper, the authors demonstrate the research developed in the few years in the fascinating and challenging field of Dy-based SMMs with particular focus on how recent studies tend to address the issue of relaxation dynamics in these systems from synthetic point of view.
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This article is published in Coordination Chemistry Reviews.The article was published on 2013-06-01. It has received 800 citations till now.

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Symmetry strategies for high performance lanthanide-based single-molecule magnets

TL;DR: In this review, crystal-field theory is employed to demonstrate the electronic structures according to the semiquantitative electrostatic model and specific symmetry elements are analysed for the elimination of transverse crystal fields and quantum tunnelling of magnetization (QTM).

A Polynuclear Lanthanide Single-Molecule Magnet with a Record

TL;DR: The magnet-like behavior can be observed by slow relaxation of the magnetization below the blocking temperature as mentioned in this paper, and this assumption has formed the basis for the understanding of the origin of the anisotropic barrier.
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Equatorially Coordinated Lanthanide Single Ion Magnets

TL;DR: The three-coordinate Er-based complex is the first equatorially coordinated mononuclear Er- based single-molecule magnet (SMM) corroborating that simple models can effectively direct the design of target SMMs incorporating 4f-elements.
Journal ArticleDOI

Radical ligand-containing single-molecule magnets

TL;DR: A survey of radical ligand-containing single-molecule magnets can be found in this article, with a brief overview of other classes of metal-ligand radical complexes that could be exploited in the design of new single molecule magnet.
Journal ArticleDOI

Toward heterometallic single-molecule magnets: Synthetic strategy, structures and properties of 3d–4f discrete complexes

TL;DR: In this paper, a review of 3d-4f heterometallic discrete complexes is presented, focusing on the examples showing dynamics of the magnetization, as well as the synthetic strategy, structures and magnetic properties.
References
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Journal ArticleDOI

Magnetic bistability in a metal-ion cluster

TL;DR: In this article, it was shown that the magnetization of the Mn12 cluster is highly anisotropic and the magnetisation relaxation time becomes very long below a temperature of 4 K, giving rise to pronounced hysteresis.
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Time‐Dependent Statistics of the Ising Model

TL;DR: In this paper, the effect of a uniform, time-varying magnetic field upon the Ising model is discussed, and the frequency-dependent magnetic susceptibility is found in the weak-field limit.
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Molecular spintronics using single-molecule magnets

TL;DR: This work reviews the first progress in the resulting field, molecular spintronics, which will enable the manipulation of spin and charges in electronic devices containing one or more molecules, and discusses the advantages over more conventional materials, and the potential applications in information storage and processing.
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Quantum Tunneling of Magnetization and Related Phenomena in Molecular Materials

TL;DR: The fundamental concepts needed to understand quantum size effects in molecular magnets are reviewed and critically report what has been done in the field to date are critically reported.
Journal ArticleDOI

Lanthanide Double-Decker Complexes Functioning as Magnets at the Single-Molecular Level

TL;DR: Double-decker phthalocyanine complexes with Tb3+ or Dy3+ showed slow magnetization relaxation as a single-molecular property and a significant temperature rise results from a mechanism in the relaxation process different from that in the transition-metal-cluster SMMs.
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