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Superconducting binary hydrides: Theoretical predictions and experimental progresses
Hydrogen, the lightest element in the periodic table, has been predicted to metalize under
extreme compression. Metallic hydrogen is believed to be a room-temperature …
extreme compression. Metallic hydrogen is believed to be a room-temperature …
Structure and superconductivity of hydrides at high pressures
D Duan, Y Liu, Y Ma, Z Shao, B Liu… - National Science …, 2017 - academic.oup.com
Hydrogen atoms can provide high phonon frequencies and strong electron–phonon
coupling in hydrogen-rich materials, which are believed to be potential high-temperature …
coupling in hydrogen-rich materials, which are believed to be potential high-temperature …
Design principles for high-temperature superconductors with a hydrogen-based alloy backbone at moderate pressure
Hydrogen-based superconductors provide a route to the long-sought goal of room-
temperature superconductivity, but the high pressures required to metallize these materials …
temperature superconductivity, but the high pressures required to metallize these materials …
Prediction of high- superconductivity in ternary lanthanum borohydrides
X Liang, A Bergara, X Wei, X Song, L Wang, R Sun… - Physical Review B, 2021 - APS
The study of superconductivity in compressed hydrides is of great interest due to
measurements of high critical temperatures (T c) in the vicinity of room temperature …
measurements of high critical temperatures (T c) in the vicinity of room temperature …
: Towards high- low-pressure superconductivity in ternary superhydrides
In the last five years a large number of new high-temperature superconductors have been
predicted and experimentally discovered among hydrogen-rich crystals, at pressures, which …
predicted and experimentally discovered among hydrogen-rich crystals, at pressures, which …
Generative adversarial networks for crystal structure prediction
The constant demand for novel functional materials calls for efficient strategies to accelerate
the materials discovery, and crystal structure prediction is one of the most fundamental tasks …
the materials discovery, and crystal structure prediction is one of the most fundamental tasks …
Semimetallic two-dimensional boron allotrope with massless Dirac fermions
It has been widely accepted that planar boron structures, composed of triangular and
hexagonal motifs are the most stable two-dimensional (2D) phases and likely precursors for …
hexagonal motifs are the most stable two-dimensional (2D) phases and likely precursors for …
High-throughput discovery of high-temperature conventional superconductors
We survey the landscape of binary hydrides across the entire periodic table from 10 to 500
GPa using a crystal structure prediction method. Building a critical temperature (T c) model …
GPa using a crystal structure prediction method. Building a critical temperature (T c) model …
Strong correlation between electronic bonding network and critical temperature in hydrogen-based superconductors
By analyzing structural and electronic properties of more than a hundred predicted hydrogen-
based superconductors, we determine that the capacity of creating an electronic bonding …
based superconductors, we determine that the capacity of creating an electronic bonding …
Superconductivity in compressed ternary alkaline boron hydrides
Recently, the carbonaceous sulfur hydride was synthesized [E. Snider, Nature (London)
586, 373 (2020) 0028-0836 10.1038/s41586-020-2801-z], and the measured …
586, 373 (2020) 0028-0836 10.1038/s41586-020-2801-z], and the measured …