Chiral Dysprosium Single‐Molecule Magnets Displaying Circular Polarized Luminescence and Magneto‐Chiral Dichroism
Abstract
ABSTRACT The combination of single‐molecule magnet (SMM) behavior with chiroptical and magneto‐(chiro)optical properties allows for the preparation of functional materials responsive to light and magnetic fields. Herein, we report on novel enantiopure chiral lanthanide (Ln) SMMs derived from the [Ln(bbpen)] + scaffold (bbpen = N,N′‐bis(2‐hydroxybenzyl)‐N,N′‐bis(2‐methylpyridyl)ethylenediamine), formulated as [Dy(bbpen)((1 S ,2 S )/(1 R ,2 R )‐ chxn )](BPh 4 ) ( Dy‐ S / R ) ( chxn = 1,2‐diaminocyclohexane). These chiral complexes exhibit SMM behavior associated with effective energy barriers over 800 K and strong room‐temperature NCD and MCD responses, as evidenced by the g NCD and g MCD dissymmetry factors. CPL measurements at room temperature reveal | g lum | values of 0.23(2) for the 4 F 9/2 → 6 H 11/2 magnetic dipole‐allowed transition, setting a new record value in the realm of chiral SMMs. Furthermore, variable‐temperature and variable‐field MChD spectroscopy measurements reveal among the strongest magneto‐chiral optical responses reported so far for Dy III chiral complexes, despite the electric‐dipole induced nature of the Dy III f‐f electronic transitions. Dynamic MChD measurement at low temperature allowed us to optically trace the magnetic hysteresis cycles for both enantiomers and for different electronic transitions. Overall, this study establishes the bbpen scaffold as an ideal building block for the preparation of multifunctional materials and open great perspectives for the preparation of novel chiral materials with enhanced magneto‐(chiro)optical responses by chemical design.
Article Details
Authors (10)
Peng‐Xu Lu
Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE For Functional Molecular, Engineering Sun Yat‐Sen University Guangzhou China
Langit Cahya Adi
Laboratoire National des Champs Magnétiques Intenses (LNCMI) CNRS, Univ. Grenoble Alpes, INSA Toulouse, Univ. Toulouse Paul Sabatier, EMFL Grenoble France
Pei‐Yu Liao
Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE For Functional Molecular, Engineering Sun Yat‐Sen University Guangzhou China
Wei Deng
Hai‐Ling Wang
Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE For Functional Molecular, Engineering Sun Yat‐Sen University Guangzhou China
Jian‐Hua Jia
Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, IGCME, GBRCE For Functional Molecular, Engineering Sun Yat‐Sen University Guangzhou China
Geert L. J. A. Rikken
Laboratoire National de Champs Magnétiques Intenses (LNCMI), CNRS, Univ. Grenoble Alpes, INSA Toulouse, Univ. Paul Sabatier, EMFL
Cyrille Train
Laboratoire National de Champs Magnétiques Intenses (LNCMI), CNRS, Univ. Grenoble Alpes, INSA Toulouse, Univ. Paul Sabatier, EMFL
Matteo Atzori
Laboratoire National de Champs Magnétiques Intenses (LNCMI), CNRS, Univ. Grenoble Alpes, INSA Toulouse, Univ. Paul Sabatier, EMFL
Ming‐Liang Tong
Key Laboratory of Bioinorganic and Synthetic Chemistry of Ministry of Education, School of Chemistry, Institute of Green Chemistry and Molecular Engineering Guangdong Basic Research Center of Excellence for Functional Molecular Engineering, Sun Yat‐Sen University Guangzhou P.R. China