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Tetraanionic <i>arachno</i> ‐Carboranyl Ligand Imparts Strong Axiality to Terbium(III) Single‐Molecule Magnets

Peng‐Bo Jin, Ke‐Xin Yu, Qian‐Cheng Luo, Yeye Liu, Yuan‐Qi Zhai, Yan‐Zhen Zheng

2022Angewandte Chemie International Edition31 citationsDOI

Abstract

Abstract A family of fully sandwiched arachno ‐lanthanacarborane complexes formulated as {η 6 ‐[μ‐1,2‐[o‐C 6 H 4 (CH 2 ) 2 ]‐1,2‐C 2 B 10 H 10 ] 2 Ln}{Li 5 (THF) 10 } (Ln=Tb, Dy, Ho, Er, Y) is successfully synthesized, where the “carbons‐adjacent” carboranyl ligand ( arachno ‐R 2 ‐C 2 B 10 H 10 4− ) bears four negative charges and coordinates to the central lanthanide ions using the hexagonal η 6 C 2 B 4 face. Thus, the central lanthanide cations are pseudo‐twelve‐coordinate and have an approximate pseudo‐ D 6 h symmetry or hexagonal‐prismatic geometry. As the crystal field effect imparted by this geometry is still unknown, we thoroughly investigated the magnetic properties of this series of complexes and found that the crystal field imposed by this ligand causes a relation of Tb&gt;Dy&gt;Ho&gt;Er for the energy gaps between the ground and the first excited states, which is of striking resemblance to the ferrocenophane and phthalocyanine ligands although the latter two ligands give disparate local coordination geometries. Moreover, the effective energy barrier to magnetization reversal of 445(10) K, the observable hysteresis loop up to 4 K and the relaxation time of the yttrium‐diluted sample reaching 193(17) seconds at 2 K under an optimized field for the Tb analogue of this family of arachno ‐lanthanacarborane complexes, render a new benchmark for Tb 3+ ‐based single‐molecule magnets.

Topics & Concepts

TerbiumLanthanideChemistryLigand (biochemistry)Ligand field theoryCrystallographyExcited stateMagnetizationMoleculeCrystal (programming language)IonPhysicsAtomic physicsMagnetic fieldComputer scienceOrganic chemistryProgramming languageBiochemistryReceptorQuantum mechanicsMagnetism in coordination complexesLanthanide and Transition Metal ComplexesAdvanced NMR Techniques and Applications
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