Lanthanide metallocenophanes are an intriguing class of organometallic complexes that feature rare six-coordinate trigonal prismatic coordination environments of 4f elements with close intramolecular proximity to transition metal ions. Herein, we present a systematic study of the structural and magnetic properties of the ferrocenophanes, [LnFc(THF)Li], of the late trivalent lanthanide ions (Ln = Gd (), Ho (), Er (), Tm (), Yb (), Lu ()). One major structural trend within this class of complexes is the increasing diferrocenyl (Fc) average twist angle with decreasing ionic radius ( ) of the central Ln ion, resulting in the largest average Fc twist angles for the Lu compound . Such high sensitivity of the twist angle to changes in is unique to the here presented ferrocenophane complexes and likely due to the large trigonal plane separation enforced by the ligand (>3.2 Å). This geometry also allows the non-Kramers ion Ho to exhibit slow magnetic relaxation in the absence of applied dc fields, rendering compound a rare example of a Ho-based single-molecule magnet (SMM) with barriers to magnetization reversal () of 110-131 cm. In contrast, compounds featuring Ln ions with prolate electron density () don't show slow magnetization dynamics under the same conditions. The observed trends in magnetic properties of are supported by state-of-the-art calculations. Finally, the magneto-structural relationship of the trigonal prismatic Ho-[1]ferrocenophane motif was further investigated by axial ligand (THF in ) exchange to yield [HoFc(THF*)Li] () and [HoFc(py)Li] () motifs. We find that larger average Fc twist angles (in and as compared to in ) result in faster magnetic relaxation times at a given temperature.
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http://dx.doi.org/10.1039/d0sc01197e | DOI Listing |
Acta Crystallogr E Crystallogr Commun
January 2025
Département de Chimie Faculté des Sciences et Techniques Université Cheik Anta Diop Dakar Senegal.
In the binuclear title complex, [La(CHO)(CHN)(HO)](NO)·0.5HO, the two lanthanum ions are nine coordinate in a distorted trigonal-prismatic geometry. Each La ion is bonded to three N atoms of the Schiff base, 1-(pyridin-2-yl)-2-(pyridin-2-yl-methyl-ene)hydrazine and is coordinated by one acetate group, which acts in -bidentate mode and two acetate groups that act in -mode between the two La ions.
View Article and Find Full Text PDFNat Commun
December 2024
International Center for Quantum Design of Functional Materials (ICQD), Hefei National Research Center for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, Anhui, 23026, China.
Heterostructures and superlattices composed of layered transition metal dichalcogenides (TMDs), celebrated for their superior emergent properties over individual components, offer significant promise for the development of multifunctional electronic devices. However, conventional fabrication techniques for these structures depend on layer-by-layer artificial construction and are hindered by their complexity and inefficiency. Herein, we introduce a universal strategy for the automated synthesis of TMD superlattice single crystals through self-assembly, exemplified by the NbSeTe 1T/1H superlattice.
View Article and Find Full Text PDFInorg Chem
December 2024
Department of Chemistry and Biochemistry, University of South Carolina, Columbia, South Carolina 29208, United States.
We report a detailed structural study of a series of five new quaternary Eu(II)-containing mixed chalcogenide phases, EuSiSeS, EuSiSeS, EuSiSeS, EuSiSeS, and EuSiSe, synthesized using the flux-assisted boron chalcogen mixture (BCM) method. High-quality crystals were grown, and their crystal structures were determined by single-crystal X-ray diffraction. All members of the EuSiSeS series crystallize in the monoclinic crystal system with space group 2/, except EuSiSe, which crystallizes in the 2 space group.
View Article and Find Full Text PDFSmall
December 2024
Department of Materials Science & Engineering and Research Institute of Advanced Materials, Seoul National University, Seoul, 08826, Republic of Korea.
Polymorphic phases of 2D van der Waals layered materials attract significant research interest due to their diverse properties. There is a growing need to synthesize novel polymorphs and explore their atomic-level structures. In this study, molecular beam epitaxy (MBE) is used to grow indium telluride, a III-VI metal chalcogenide with promising applications, on graphene substrates.
View Article and Find Full Text PDFDalton Trans
December 2024
State Key Laboratory of Materials-Oriented Chemical Engineering, School of Chemistry and Molecular Engineering, Nanjing Tech University, Nanjing 211816, P. R. China.
Two pairs of chiral enantiomers D/L-Dy(PMP)·2HO (D-1/L-1) and D/L-Yb(PMP)·2HO (D-2/L-2) were synthesized by the introduction of enantiomerically pure D/L-PMP (PMP = (phosphonomethyl)proline) ligands into lanthanide coordination chemistry. The chiral characteristics of these products were confirmed by single crystal X-ray diffraction, second harmonic generation (SHG) measurements and circular dichroism (CD) spectroscopy. These complexes are composed of 1D chains constructed from lanthanide ions with a trigonal prismatic coordination geometry and PMP ligands.
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