Controlling the Magnetic Properties of the van der Waals Multiferroic Crystals CoNiI
arXiv:2406.09146 · doi:10.1021/acs.chemmater.4c01053
Abstract
The structurally related compounds NiI and CoI are multiferroic van der Waals materials, in which helimagnetic orders exist simultaneously with electric polarization. Here, we report on the evolution of the crystal structure and of the magnetic properties across the solid solution CoNiI. We have successfully grown crystals of the whole range of the solid solution, i.e. , by employing the self-selecting vapor growth (SSVG) technique and by carefully tuning the synthesis conditions according to the chemical composition. Our structural investigations show that the crystal symmetry changes from to when Ni substitutes for Co beyond . Both the lattice parameters and magnetic properties evolve continuously and smoothly from one end member to the other, showing that they can be finely tuned by the chemical composition. We also observe that the Ni substitution degree in the solid solution affects the metamagnetic transition typical for CoI at high magnetic fields. In particular, we find the existence of the metamagnetic transition similar to that for CoI in the NiI structure. Based on magnetic measurements we construct the phase diagram of the CoNiI system. Controlling the magnetic properties by the chemical composition may open new pathways for the fabrication of electronic devices made of two-dimensional (2D) flakes of multiferroic van der Waals materials.
Accepted for publication in Chemistry of Materials
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