| Literature DB >> 27026506 |
Ahmed Fetoh1,2, Goulven Cosquer1,3, Masakazu Morimoto4, Masahiro Irie4, Ola El-Gammal2, Gaber Abu El-Reash2, Brian K Breedlove1,3, Masahiro Yamashita1,3.
Abstract
A major roadblock to fully realizing molecular electronic devices is the ability to control the properties of each molecule in the device. Herein we report the control of the magnetic properties of single-molecule magnets (SMMs), which can be used in memory devices, by using a photo-isomerizable diarthylenthene ligand. Photo-isomerization of the diarylethene ligand bridging two manganese salen complexes with visible light caused a significant change in the SMM behavior due to opening of the six-membered ring of diarylethene ligand, accompanied by reorganization of the entire molecule. The ring-opening activated the frequency-dependent magnetization of the complex. Our results are a major step towards the realization of molecular memory devices composed of SMMs because the SMM behaviour can be turned on and off simply by irradiating the molecule.Entities:
Year: 2016 PMID: 27026506 PMCID: PMC4824451 DOI: 10.1038/srep23785
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1ORTEP diagrams of 1c.
Representation with 30% thermal ellipsoid. Solvent molecules and hydrogen atoms were omitted for clarity.
Figure 2Comparison of the static magnetic properties of 1c and 1c-Vis.
Temperature dependence of χmT. Insets: M vs. H at 1.82 K.
Figure 3Slow magnetic relaxation of 1c-Vis.
Left: Cole-Cole plots at several T in an H of 5000 Oe. Right: Arrhenius plots.
Figure 4Switching on/off of the SMM behavior.
Frequency dependence of out-of-phase susceptibility for the complex after opening and closing process at 1.9 K.