First-principles studies of the electronic and magnetic structures and bonding properties of boron subnitride B$_{13}$N$_2$
Samir F. Matar, Vladimir L. Solozhenko

TL;DR
This study uses density functional theory to explore the electronic, magnetic, and bonding properties of boron subnitride B$_{13}$N$_2$, revealing magnetic instability and unique bonding features in this boron-rich compound.
Contribution
It provides the first detailed quantum mechanical analysis of B$_{13}$N$_2$, including its magnetic properties and bonding characteristics, which were not previously characterized.
Findings
B$_{13}$N$_2$ exhibits magnetic instability with a stable half-ferromagnetic state.
The compound has elongated B-N bonds due to N bonding with B$_{12}$ structures.
Spin-polarized calculations show magnetic moments and stability over non-spin-polarized results.
Abstract
Rhombohedral B unit is viewed as a host matrix embedding linear tri-atomic arrangements of elements (E) resulting in a relatively large family of boron-rich compounds with B{E-E-E} generic formulation. The present work focuses on boron subnitride, BN that we express in present context as B{N-B-N}. Within well established quantum density functional theory (DFT) a full study of its electronic properties is provided. Also linear triatomic arrangements in view of the existence in simple compounds such as sodium azide NaN, i.e., Na{N-N-N} and calcium cyanamide, Ca{N-C-N}, we devised Sc{N-B-N} to establish comparison with B{N-B-N}. ScBN is calculated to be cohesive and possessing N-B-N isolated from ScIII with dB-N = 1.33 {\AA}. In B{N-B-N} an elongated dB-N=1.43 {\AA} is identified due to the bonding of N with one of…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
