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The magnetic genome of two-dimensional van der Waals materials
Magnetism in two-dimensional (2D) van der Waals (vdW) materials has recently emerged as
one of the most promising areas in condensed matter research, with many exciting emerging …
one of the most promising areas in condensed matter research, with many exciting emerging …
Molecular approach to engineer two-dimensional devices for CMOS and beyond-CMOS applications
Two-dimensional materials (2DMs) have attracted tremendous research interest over the
last two decades. Their unique optical, electronic, thermal, and mechanical properties make …
last two decades. Their unique optical, electronic, thermal, and mechanical properties make …
Two‐dimensional magnetic transition metal chalcogenides
The field of two‐dimensional (2D) magnets has expanded rapidly during the past several
years since the first demonstration of intrinsic 2D magnetism in atomically thin CrI3 and …
years since the first demonstration of intrinsic 2D magnetism in atomically thin CrI3 and …
Enhancing Ferromagnetism and Tuning Electronic Properties of CrI3 Monolayers by Adsorption of Transition-Metal Atoms
Q Yang, X Hu, X Shen, AV Krasheninnikov… - … Applied Materials & …, 2021 - ACS Publications
Among first experimentally discovered two-dimensional (2D) ferromagnetic materials,
chromium triiodide (CrI3) monolayers have attracted particular attention due to their potential …
chromium triiodide (CrI3) monolayers have attracted particular attention due to their potential …
Tuning magnetism at the two-dimensional limit: A theoretical perspective
The discovery of two-dimensional (2D) magnetic materials provides an ideal testbed for
manipulating the magnetic properties at the atomically thin and 2D limit. This review gives …
manipulating the magnetic properties at the atomically thin and 2D limit. This review gives …
First-Principles Study of the Enhanced Magnetic Anisotropy and Transition Temperature in a CrSe2 Monolayer via Hydrogenation
The realization of two-dimensional (2D) magnetism opens an unprecedented possibility for
building future magnetoelectric nanodevices; however, wide application is still restricted by …
building future magnetoelectric nanodevices; however, wide application is still restricted by …
Physical insights into enhancing magnetic stability of 2D magnets
Recently, two-dimensional (2D) magnets have drawn substantial attention from researchers
for their fascinating properties and great application potential in the fields of biomedicine …
for their fascinating properties and great application potential in the fields of biomedicine …
Magnetic anisotropy, exchange coupling and Dzyaloshinskii—Moriya interaction of two-dimensional magnets
Abstract The two-dimensional (2D) magnets provide novel opportunities for understanding
magnetism and investigating spin related phenomena in several atomic thickness. Multiple …
magnetism and investigating spin related phenomena in several atomic thickness. Multiple …
The impacts of molecular adsorption on antiferromagnetic MnPS 3 monolayers: enhanced magnetic anisotropy and intralayer Dzyaloshinskii–Moriya interaction
In two-dimensional (2D) magnetic systems, significant magnetic anisotropy is required to
protect magnetic ordering against thermal fluctuation. In this paper, we explored the effect of …
protect magnetic ordering against thermal fluctuation. In this paper, we explored the effect of …
Opening the Hysteresis Loop in Ferromagnetic Fe3GeTe2 Nanosheets Through Functionalization with TCNQ Molecules
Abstract Ferromagnetic metal Fe3GeTe2 (FGT), whose structure exhibits weak van‐der‐
Waals interactions between 5‐atom thick layers, was subjected to liquid‐phase exfoliation …
Waals interactions between 5‐atom thick layers, was subjected to liquid‐phase exfoliation …