Publikation: Cooperative and selective redox doping switches single-molecule magnetism
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The controlled manipulation of electronic and magnetic states in single-molecule magnets (SMMs) is crucial for their implementation in molecular electronics, spintronics, and quantum computation. In typical SMMs, key properties like magnetic anisotropy and slow magnetic relaxation are imposed by complex ligand shells, whose bulky and three-dimensional structures hamper efficient manipulation of the molecular magnetism by chemical methods. This work demonstrates highly selective redox doping of an Fe4 nanomagnet on a Pb(111) surface using lithium atoms. Scanning tunneling microscopy, x-ray absorption spectroscopy, and ab initio calculations reveal the cooperative incorporation of three Li atoms per Fe4 molecule, resulting in a selective, threefold reduction of its iron-based magnetic core. The doping modifies the intramolecular exchange interaction, turning from antiferromagnetic to ferromagnetic, and changes the molecular magnetic anisotropy from easy-axis to easy-plane. This study demonstrates successful chemical redox doping of individual polynuclear molecular magnets, exploits a rare showcase of cooperative binding, and highlights a route for tuning magnetic properties of complex SMMs.
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PASCHKE, Fabian, Matteo BRIGANTI, Vivien Anna-Lena ENENKEL, Tobias BIRK, Jan DREISER, Peter SCHMITT, Rainer F. WINTER, Federico TOTTI, Mikhail FONIN, 2025. Cooperative and selective redox doping switches single-molecule magnetism. In: Science Advances. American Association for the Advancement of Science (AAAS). 2025, 11(21), eadu0916. eISSN 2375-2548. Verfügbar unter: doi: 10.1126/sciadv.adu0916BibTex
@article{Paschke2025-05-23Coope-73849,
title={Cooperative and selective redox doping switches single-molecule magnetism},
year={2025},
doi={10.1126/sciadv.adu0916},
number={21},
volume={11},
journal={Science Advances},
author={Paschke, Fabian and Briganti, Matteo and Enenkel, Vivien Anna-Lena and Birk, Tobias and Dreiser, Jan and Schmitt, Peter and Winter, Rainer F. and Totti, Federico and Fonin, Mikhail},
note={Article Number: eadu0916}
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