High-temperature phonon-mediated superconductivity in monolayer Mg2B4C2
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2022Metadata
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Singh, Sobhit
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High-temperature phonon-mediated superconductivity in monolayer Mg2B4C2
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Abstract
A two-dimensional material - Mg2B4C2, belonging to the family of the conventional superconductor MgB2, is theoretically predicted to exhibit superconductivity with critical temperature T-c estimated in the 47-48 K range (predicted using the McMillian-Allen-Dynes formula) without any tuning of external parameters such as doping, strain, or substrate-induced effects. The origin of such a high intrinsic T-c is ascribed to the presence of strong electron-phonon coupling and large density of states at the Fermi level. This system is obtained after replacing the chemically active boron-boron surface layers in a MgB2 slab by chemically inactive boron-carbon layers. Hence, the surfaces of this material are inert. Our calculations confirm the stability of 2D Mg2B4C2. We also find that the key features of this material remain essentially unchanged when its thickness is increased by modestly increasing the number of inner MgB2 layers.
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omision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
CONICYT FONDECYT 1191353
3200697
1180175
1190361
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)
CONICYT PIA/BASAL AFB180001
Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT) PIA/Anillo ACT192023
Office of Naval Research N00014-21-1-2107
N00014-19-1-2073
N00014-16-1-2951
National Science Foundation (NSF)
National Research Foundation of Korea DMR-1954856
National Science Foundation (NSF)
NSF - Office of the Director (OD) CHE-1351968
National Science Foundation (NSF) ACI-1053575
United States Department of Energy (DOE) DE-SC0020353
DE-SC0021375
Texas Advances Computer Center
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NPJ Quantum Materials (2022) 37
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