학술논문

Fe Site Order and Magnetic Properties of Fe1/4NbS2
Document Type
Article
Source
Inorganic Chemistry; November 2023, Vol. 62 Issue: 44 p18179-18188, 10p
Subject
Language
ISSN
00201669; 1520510X
Abstract
Transition-metal dichalcogenides (TMDs) have long been attractive to researchers for their diverse properties and high degree of tunability. Most recently, interest in magnetically intercalated TMDs has resurged due to their potential applications in spintronic devices. While certain compositions featuring the absence of inversion symmetry such as Fe1/3NbS2and Cr1/3NbS2have garnered the most attention, the diverse compositional space afforded through the host matrix composition as well as intercalant identity and concentration is large and remains relatively underexplored. Here, we report the magnetic ground state of Fe1/4NbS2that was determined from low-temperature neutron powder diffraction as an A-type antiferromagnet. Despite the presence of overall inversion symmetry, the pristine compound manifests spin polarization induced by the antiferromagnetic order at generic kpoints, based on density functional theory band-structure calculations. Furthermore, by combining synchrotron diffraction, pair distribution function, and magnetic susceptibility measurements, we find that the magnetic properties of Fe1/4NbS2are sensitive to the Fe site order, which can be tuned via electrochemical lithiation and thermal history.