| Literature DB >> 29629088 |
Sara G Miralles1, Amilcar Bedoya-Pinto2,3, José J Baldoví1,4, Walter Cañon-Mancisidor1,5, Yoann Prado1, Helena Prima-Garcia1, Alejandro Gaita-Ariño1, Guillermo Mínguez Espallargas1, Luis E Hueso2, Eugenio Coronado1.
Abstract
A new family of chloroquinolinate lanthanoidEntities:
Year: 2017 PMID: 29629088 PMCID: PMC5869315 DOI: 10.1039/c7sc03463f
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1The molecular structure of the compounds. (a) Na[Ln(5,7Cl2q)4] (in short NaLnClq with Ln = Y (1), Tb (2) or Dy (3)); (b) NEt4[Dy(5,7Cl2q)4] (4); (c) K0.5(NEt4)0.5[Dy(5,7Cl2q)4] (5). The central lanthanoid ion is in pink, oxygen in red, nitrogen in blue, carbon in black, chlorine in green and sodium (in a) and potassium (in c) in yellow. Hydrogen atoms have been omitted for clarity.
Fig. 2Magnetic measurements for bulk NaDyClq (3). (a) χT vs. T plot at 1000 Oe, where the solid line is the theoretical simulation obtained using SIMPRE software. (b) The frequency dependence of the in-phase magnetic susceptibility under a 500 Oe DC field. (c) The frequency dependence of the out of phase magnetic susceptibility under a 500 Oe DC field. (d) Cole–Cole plots where the solid lines are fits to eqn SI7, ESI.†
Fig. 3Thermogravimetric analysis (TGA) of the compounds. The dashed lines magnify the changes of slope in m(T) since they are the derivatives dm/dT.
Fig. 4AC magnetic measurements of 3 (NaDyClq), in bulk (a and b) and as a film (c and d) showing the preservation of the slow relaxation of the magnetization. The measurements were performed under a 1000 Oe external DC field.
Fig. 5Temperature-dependent magnetization of a 10 nm NaTbClq (2) layer grown on a 1.5 nm layer of Al2O3 (a) and on a 10 nm layer of NiFe (b). Temperature-dependent magnetization of a NaDyClq (3) layer grown on a 10 nm layer of Au (c) and on a 10 nm layer of NiFe (d). Note that the displayed magnetization in (a) and (c) is the as-obtained value, while for (b) and (d) the ferromagnetic contribution of the NiFe substrate has been subtracted to visualize the magnetization related to the molecular layer (see Fig. SI17, ESI† for a detailed description).
Fig. 6X-ray absorption spectroscopy (XAS) spectrum of the molecule NaDyClq (3) compared to that of a NaDyClq/NiFe interface: (a) Dy M5-edge, (b) O K-edge, (c) N K-edge and (d) C K-edge.