The appearance of intrinsic ferromagnetism in 2D materials opens the possibility of investigating the interplay between magnetism and topology. The magnetic anisotropy energy (MAE) describing the easy axis for magnetization in a particular direction is an important yardstick for nanoscale applications. Here, the first-principles approach is used to investigate the electronic band structures, the strain dependence of MAE in pristine VSi2Z4 (Z = P, As) and its Janus phase VSiGeP2As2 and the evolution of the topology as a function of the Coulomb interaction. In the Janus phase the compound presents a breaking of the mirror symmetry, which is equivalent to having an electric field, and the system can be piezoelectric. It is revealed that all th...
We report a density functional theory study of a phase transition of a VS2 monolayer that can be tun...
The seminal experimental discovery of the remarkably stable MoSi$_2$N$_4$ monolayer has led to a han...
Thesis (Ph.D.)--University of Washington, 2023Over the past 40 years, topological materials have eme...
The appearance of intrinsic ferromagnetism in 2D materials opens the possibility of investigating th...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Inspired by the successful synthesis of two-dimensional (2D) V-based Janus dichloride monolayers wit...
We theoretically predict that vanadium-based Janus dichalcogenide monolayers constitute an ideal pla...
Exploring room-temperature intrinsic magnetism in two-dimensional (2D) materials for nanoscale spint...
We investigated the electronic structure of the layered transition-metal dichalcogenides VS2 and VSe...
Two-dimensional topological insulators and two-dimensional materials with ferroelastic characteristi...
Phonon and spintronic structures of monolayered Janus vanadium-dichalcogenide compounds are calculat...
The compositional as well as structural asymmetries in Janus transition metal dichalcogenides (J-TMD...
International audienceThe Dzyaloshinskii-Moriya interaction (DMI), which only exists in noncentrosym...
We report a density functional theory study of a phase transition of a VS2 monolayer that can be tun...
The seminal experimental discovery of the remarkably stable MoSi$_2$N$_4$ monolayer has led to a han...
Thesis (Ph.D.)--University of Washington, 2023Over the past 40 years, topological materials have eme...
The appearance of intrinsic ferromagnetism in 2D materials opens the possibility of investigating th...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Inspired by recent experiments on the successful fabrication of monolayer Janus transition-metal dic...
Inspired by the successful synthesis of two-dimensional (2D) V-based Janus dichloride monolayers wit...
We theoretically predict that vanadium-based Janus dichalcogenide monolayers constitute an ideal pla...
Exploring room-temperature intrinsic magnetism in two-dimensional (2D) materials for nanoscale spint...
We investigated the electronic structure of the layered transition-metal dichalcogenides VS2 and VSe...
Two-dimensional topological insulators and two-dimensional materials with ferroelastic characteristi...
Phonon and spintronic structures of monolayered Janus vanadium-dichalcogenide compounds are calculat...
The compositional as well as structural asymmetries in Janus transition metal dichalcogenides (J-TMD...
International audienceThe Dzyaloshinskii-Moriya interaction (DMI), which only exists in noncentrosym...
We report a density functional theory study of a phase transition of a VS2 monolayer that can be tun...
The seminal experimental discovery of the remarkably stable MoSi$_2$N$_4$ monolayer has led to a han...
Thesis (Ph.D.)--University of Washington, 2023Over the past 40 years, topological materials have eme...