Cargando…

Thermostability and photoluminescence of Dy(iii) single-molecule magnets under a magnetic field

A series of compounds [ADyL(4)]·[solvent] composed of a dysprosium(iii) ion coordinated by four chelated naphthyridine-like ligands (L = 4-hydroxy-8-methyl-1,5-naphthyridine-3-carbonitrile) and an alkali metal ion (A = Na, K, Rb, Cs) were synthesized and characterized. They behave as single-molecule...

Descripción completa

Detalles Bibliográficos
Autores principales: Bi, Ye, Chen, Cheng, Zhao, Yi-Fang, Zhang, Yi-Quan, Jiang, Shang-Da, Wang, Bing-Wu, Han, Jun-Bo, Sun, Jun-Liang, Bian, Zu-Qiang, Wang, Zhe-Ming, Gao, Song
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6018642/
https://www.ncbi.nlm.nih.gov/pubmed/30155153
http://dx.doi.org/10.1039/c6sc01157h
Descripción
Sumario:A series of compounds [ADyL(4)]·[solvent] composed of a dysprosium(iii) ion coordinated by four chelated naphthyridine-like ligands (L = 4-hydroxy-8-methyl-1,5-naphthyridine-3-carbonitrile) and an alkali metal ion (A = Na, K, Rb, Cs) were synthesized and characterized. They behave as single-molecule magnets under a zero dc field with an effective energy barrier of around 95 cm(–1). Meanwhile, the main part, [ADyL(4)], of these SMMs is thermostable and sublimable. The geometric structures of three sublimed compounds are identical to the original ones without solvents, which is confirmed by X-ray diffraction using single crystal and powder samples. The static and dynamic magnetic properties remain unchanged before and after sublimation. Luminescence measurements at 5–77 K were performed to verify the energy gap between low-lying states and to understand the pathway of the thermal relaxation process of magnetization, as well as to inspect the tiny variation in magnetic sublevels for the ground term of Dy(iii). The photoluminescence spectra under a magnetic field (0–36 T) for the Dy-SMMs are investigated for the first time. The energy splitting of the two lowest sublevels of the ground term (6)H(15/2) of Dy(iii) are analyzed using the Zeeman formula.