arXiv · 2211.14772
High-temperature ferromagnetism and strong $\pi$-conjugation feature in two-dimensional manganese tetranitride
Abstract
Two-dimensional (2D) magnetic materials have attracted tremendous research interest because of the promising application in the next-generation microelectronic devices. Here, by the first-principles calculations, we propose a two-dimensional ferromagnetic material with high Curie temperature, manganese tetranitride MnN$_4$ monolayer, which is a square-planar lattice made up of only one layer of atoms. The structure is demonstrated to be stable by the phonon spectra and the molecular dynamic simulations, and the stability is ascribed to the $\pi$-d conjugation between $\pi$ orbital of N=N bond and Mn $d$ orbital. More interestingly, the MnN$_4$ monolayer displays robust 2D ferromagnetism, which originates from the strong exchange couplings between Mn atoms due to the $\pi$-d conjugation. The high critical temperature of 247 K is determined by solving the Heisenberg model with the Monte Carlo method.
Explore related subjects
Keep this discovery
Ming Yan, Z. Y. Xie, Miao Gao. 2022-11-27. High-temperature ferromagnetism and strong $\pi$-conjugation feature in two-dimensional manganese tetranitride. https://doi.org/10.1088/1674-1056/acae7b
Cite the original work for its findings. Save a collection to share your selection of sources.