Front Cover: Luminescence and Single-Molecule Magnet Properties in Ideal Symmetry Compounds: Example of a Near-Planar Tricoordinate Ytterbium(III) Amide (ChemistryEurope 6/2024)

Dr. Nimisha Jain, Dr. Félix Houard, Rémi Marchal, Marie Cordier, Dr. Boris Le Guennic, Dr. Yan Suffren, Dr. Yann Sarazin, Prof. Kevin Bernot
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Abstract

The Front Cover shows a magnetic molecule that is being considered for nanoscale information storage and quantum applications. An ideal molecule based on a tri-coordinated YbIII was theorised in 2021. In their Research Article (DOI: 10.1002/ceur.202400062), Y. Sarazin, K. Bernot and co-workers show that this molecule does indeed possess the ideal electronic structure postulated, but that its performance is much weaker than expected. The anomalies observed in its infrared emission could be an experimental signature of active vibronic contributions in the molecule, detrimental to its magnetic behaviour.

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封面:理想对称化合物的发光和单分子磁特性:近平面三配位镱(III)酰胺的实例(欧洲化学 6/2024)
封面展示了一种正在考虑用于纳米级信息存储和量子应用的磁性分子。2021 年,一种基于三配位 YbIII 的理想分子被理论化。Y. Sarazin、K. Bernot 及其合作者在他们的研究文章(DOI: 10.1002/ceur.202400062)中表明,这种分子确实具有假设的理想电子结构,但其性能却比预期的要弱得多。在其红外发射中观察到的反常现象可能是分子中活跃的振子贡献的实验特征,不利于其磁性行为。
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Front Cover: Luminescence and Single-Molecule Magnet Properties in Ideal Symmetry Compounds: Example of a Near-Planar Tricoordinate Ytterbium(III) Amide (ChemistryEurope 6/2024) Cover Feature: Water Chemistry at the Nanoscale: Clues for Resolving the “Water Paradox” Underlying the Emergence of Life (ChemistryEurope 6/2024) Luminescence and Single-Molecule Magnet Properties in Ideal Symmetry Compounds: Example of a Near-Planar Tricoordinate Ytterbium(III) Amide Steering Photoinduced Electron Transfer in Intramolecular Photocatalysts by Peripheral Ligand Control Water Chemistry at the Nanoscale: Clues for Resolving the “Water Paradox” Underlying the Emergence of Life
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