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[HTML][HTML] 2D material science: Defect engineering by particle irradiation
Two-dimensional (2D) materials are at the heart of many novel devices due to their unique
and often superior properties. For simplicity, 2D materials are often assumed to exist in their …
and often superior properties. For simplicity, 2D materials are often assumed to exist in their …
Energy of the 229Th nuclear clock transition
B Seiferle, L von der Wense, PV Bilous, I Amersdorffer… - Nature, 2019 - nature.com
Owing to its low excitation energy and long radiative lifetime, the first excited isomeric state
of thorium-229, 229mTh, can be optically controlled by a laser, and is an ideal candidate for …
of thorium-229, 229mTh, can be optically controlled by a laser, and is an ideal candidate for …
[HTML][HTML] The thermal, electrical and thermoelectric properties of graphene nanomaterials
Graphene, as a typical two-dimensional nanometer material, has shown its unique
application potential in electrical characteristics, thermal properties, and thermoelectric …
application potential in electrical characteristics, thermal properties, and thermoelectric …
Multifunctional graphene heterogeneous nanochannel with voltage-tunable ion selectivity
S Su, Y Zhang, S Peng, L Guo, Y Liu, E Fu… - Nature …, 2022 - nature.com
Ion-selective nanoporous two-dimensional (2D) materials have shown extraordinary
potential in energy conversion, ion separation, and nanofluidic devices; however, different …
potential in energy conversion, ion separation, and nanofluidic devices; however, different …
Joule heating synthesis of carbon fiber/graphene 3D crosslinked structure for lightning strike protection and electromagnetic interference in aerospace composites
A lightweight and low-cost protective layer for composites is a future requirement in the
aviation industry. However, current methods cannot simultaneously meet the dual …
aviation industry. However, current methods cannot simultaneously meet the dual …
Ion-Induced Surface Charge Dynamics in Freestanding Monolayers of Graphene and Probed by the Emission of Electrons
We compare the ion-induced electron emission from freestanding monolayers of graphene
and MoS 2 to find a sixfold higher number of emitted electrons for graphene even though …
and MoS 2 to find a sixfold higher number of emitted electrons for graphene even though …
Interatomic coulombic decay: the mechanism for rapid deexcitation of hollow atoms
The impact of a highly charged ion onto a solid gives rise to charge exchange between the
ion and target atoms, so that a slow ion gets neutralized in the vicinity of the surface. Using …
ion and target atoms, so that a slow ion gets neutralized in the vicinity of the surface. Using …
Tailoring the optical properties of atomically-thin WS 2 via ion irradiation
Two-dimensional transition metal dichalcogenides (TMDCs) exhibit excellent optoelectronic
properties. However, the large band gaps in many semiconducting TMDCs make optical …
properties. However, the large band gaps in many semiconducting TMDCs make optical …
Multiscale simulations of electron and ion dynamics in self-irradiated silicon
The interaction of energetic ions with the electronic and ionic system of target materials is an
interesting but challenging multiscale problem, and understanding of the early stages after …
interesting but challenging multiscale problem, and understanding of the early stages after …
[HTML][HTML] The charge exchange of slow highly charged ions at surfaces unraveled with freestanding 2D materials
The property of a variable charge state makes ions unique to other types of radiation a
material surface can be exposed to. As a consequence of charge exchange between ions …
material surface can be exposed to. As a consequence of charge exchange between ions …