AI Article Synopsis

  • Molybdenum-based nanowires (MoSI) show promise for nanodevice applications, but their development is limited by incomplete understanding of their electronic and atomic structures.
  • Researchers used density functional theory to explore various atomic configurations of MoSI by altering the arrangement of sulfur and iodine atoms in its structure, leading to the identification of 28 potential atomic models.
  • They found that certain configurations demonstrated conductive properties and concluded that factors like bond length distortion, the role of sulfur in charge transport, and the relationship between electronic band gaps and Mo-S bonding energies are crucial for MoSI nanowire performance.

Article Abstract

The structural, electronic, and magnetic properties of molybdenum-based nanowires have been actively investigated for their potential applications in nanodevices; however, further advancement is hindered by incomplete knowledge of the electronic and atomic structures of MoSI. To facilitate further development of MoSI nanowire devices, we propose possible atomic structures and corresponding electronic properties of MoSI nanowires based on density functional theory. We explored various combinations of atomic structures by changing the positions of sulfur and iodine atoms linked to the two Mo octahedra in the MoSI unit cell. We found two stable local energy minima structures characterized by elongation of the wire length, and therefore propose 28 possible atomic configurations. We calculated band structures of the newly proposed atomic models and found three structures that behaved as conductors. According to our compositional ordering structural analysis, we concluded that (i) periodic distortion of the bond lengths influences the behavior of the electrons in the system, (ii) the role of sulfur atoms in the bridging plane is important for intramolecular charge transport due to delocalized charge differences, and (iii) the electronic band gap energy is proportional to the integrated Mo-S bonding orbital energy.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6362008PMC
http://dx.doi.org/10.1038/s41598-018-37818-7DOI Listing

Publication Analysis

Top Keywords

atomic structures
12
structural electronic
8
electronic properties
8
properties mosi
8
mosi nanowires
8
newly proposed
8
compositional ordering
8
ordering structural
8
propose atomic
8
structures
6

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!