Abstract:
A small amount of cobalt was incorporated into the lanthanum calcium silicate apatite structure by annealing at 1500 °C in argon. The compound exhibits easy-axis magnetic anisotropy with a zero-field splitting parameter 2D of −60 cm−1 and field- induced slow relaxation of magnetization with a remagnetization energy barrier of 58–63 cm−1. Thereby, for the first time, a cobalt-based single-ion magnet was created in silicate.
Keywords:
silicate, apatite, single molecule magnet, single-ion magnet, crystal structure, magnetic properties.
Citation:
T. Z. Sharifullin, A. V. Vasiliev, A. A. Eliseev, A. A. Eliseev, S. Bette, R. E. Dinnebier, R. K. Kremer, P. E. Kazin, “Formation of a single-ion magnet in the lanthanum calcium silicate apatite structure by the cobalt oxide doping”, Mendeleev Commun., 33:6 (2023), 866–868
Linking options:
https://www.mathnet.ru/eng/mendc552
https://www.mathnet.ru/eng/mendc/v33/i6/p866
This publication is cited in the following 2 articles:
N. N. Efimov, K. A. Babeshkin, A. V. Rotov, “Dynamic Magnetic Susceptibility Method in Studies of Coordination Compounds”, Russ J Coord Chem, 50:6 (2024), 363
N. N. Efimov, K. A. Babeshkin, A. V. Rotov, “Dynamic Magnetic Susceptibility Method in Studies of Coordination Compounds”, Koordinacionnaâ himiâ, 50:7 (2024), 413