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Phase engineering of 2D materials
Polymorphic 2D materials allow structural and electronic phase engineering, which can be
used to realize energy-efficient, cost-effective, and scalable device applications. The phase …
used to realize energy-efficient, cost-effective, and scalable device applications. The phase …
[HTML][HTML] A perspective on conventional high-temperature superconductors at high pressure: Methods and materials
Two hydrogen-rich materials, H 3 S and LaH 10, synthesized at megabar pressures, have
revolutionized the field of condensed matter physics providing the first glimpse to the …
revolutionized the field of condensed matter physics providing the first glimpse to the …
Intercalated architecture of MA2Z4 family layered van der Waals materials with emerging topological, magnetic and superconducting properties
The search for new two-dimensional monolayers with diverse electronic properties has
attracted growing interest in recent years. Here, we present an approach to construct MA2Z4 …
attracted growing interest in recent years. Here, we present an approach to construct MA2Z4 …
Layered intercalation materials
Abstract 2D layered materials typically feature strong in‐plane covalent chemical bonding
within each atomic layer and weak out‐of‐plane van der Waals (vdW) interactions between …
within each atomic layer and weak out‐of‐plane van der Waals (vdW) interactions between …
The emergence and evolution of borophene
Neighboring carbon and sandwiched between non‐metals and metals in the periodic table
of the elements, boron is one of the most chemically and physically versatile elements, and …
of the elements, boron is one of the most chemically and physically versatile elements, and …
Two-dimensional boron: structures, properties and applications
Situated between metals and non-metals in the periodic table, boron is one of the most
chemically versatile elements, forming at least sixteen bulk polymorphs composed of …
chemically versatile elements, forming at least sixteen bulk polymorphs composed of …
Van der Waals heterostructures
AK Geim, IV Grigorieva - Nature, 2013 - nature.com
Research on graphene and other two-dimensional atomic crystals is intense and is likely to
remain one of the leading topics in condensed matter physics and materials science for …
remain one of the leading topics in condensed matter physics and materials science for …
Tuning two-dimensional nanomaterials by intercalation: materials, properties and applications
2D materials have attracted tremendous attention due to their unique physical and chemical
properties since the discovery of graphene. Despite these intrinsic properties, various …
properties since the discovery of graphene. Despite these intrinsic properties, various …
Dirac materials
A wide range of materials, like d-wave superconductors, graphene, and topological
insulators, share a fundamental similarity: their low-energy fermionic excitations behave as …
insulators, share a fundamental similarity: their low-energy fermionic excitations behave as …
Enhanced superconductivity in atomically thin TaS2
The ability to exfoliate layered materials down to the single layer limit has presented the
opportunity to understand how a gradual reduction in dimensionality affects the properties of …
opportunity to understand how a gradual reduction in dimensionality affects the properties of …