Magnetism arising from edge spins is highly interesting, particularly in 2D atomically thin materials in which the influence of edges becomes more significant. Among such materials, molybdenum disulfide (MoS2; one of the transition metal dichalcogenide (TMD) family) is attracting significant attention. The causes for magnetism observed in the TMD family, including in MoS2, have been discussed by considering various aspects, such as pure zigzag atomic-structure edges, grain boundaries, and vacancies. Here, we report the observation of ferromagnetism (FM) in few-layer MoS2 nanomeshes (NMs; honeycomb-like array of hexagonal nanopores with low-contamination and low-defect pore edges), which have been created by a specific non-lithographic metho...
MoS<sub>2</sub> nanolayers are versatile systems for new energy technologies such as spintronics and...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
The magnetic function of layered molybdenum disulfide (MoS2) has been investigated via simulation, b...
The magnetic function of layered molybdenum disulfide (MoS2) has been investigated via simulation, b...
The magnetic function of layered molybdenum disulfide (MoS2) has been investigated via simulation, b...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
Molybdenum disulfide nanoribbons with zigzag edges show ferromagnetic and metallic properties based ...
It is known that the edges of a two-dimensional slab of insulating MoS2 exhibit one-dimensional meta...
It is known that the edges of a two-dimensional slab of insulating MoS2 exhibit one-dimensional meta...
[[abstract]]The correlation of electronic structure and magnetic behaviors of layered molybdenum dis...
Nanoribbons (NRs) of two-dimensional (2D) materials have attracted intensive research interests beca...
MoS2 is a layered material in the family of the transition metal dicalchogenides (TMDCs), which host...
MoS2 is a layered material in the family of the transition metal dicalchogenides (TMDCs), which host...
Two-dimensional material family is long time potential semiconductor candidate material system, for ...
MoS<sub>2</sub> nanolayers are versatile systems for new energy technologies such as spintronics and...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
The magnetic function of layered molybdenum disulfide (MoS2) has been investigated via simulation, b...
The magnetic function of layered molybdenum disulfide (MoS2) has been investigated via simulation, b...
The magnetic function of layered molybdenum disulfide (MoS2) has been investigated via simulation, b...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
Molybdenum disulfide nanoribbons with zigzag edges show ferromagnetic and metallic properties based ...
It is known that the edges of a two-dimensional slab of insulating MoS2 exhibit one-dimensional meta...
It is known that the edges of a two-dimensional slab of insulating MoS2 exhibit one-dimensional meta...
[[abstract]]The correlation of electronic structure and magnetic behaviors of layered molybdenum dis...
Nanoribbons (NRs) of two-dimensional (2D) materials have attracted intensive research interests beca...
MoS2 is a layered material in the family of the transition metal dicalchogenides (TMDCs), which host...
MoS2 is a layered material in the family of the transition metal dicalchogenides (TMDCs), which host...
Two-dimensional material family is long time potential semiconductor candidate material system, for ...
MoS<sub>2</sub> nanolayers are versatile systems for new energy technologies such as spintronics and...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...