Alkali metals exhibit unexpected structures and electronic behavior at high pressures. Compression of metallic sodium (Na) to 200 GPa leads to the stability of a wide-band-gap insulator with the double hexagonal hP4 structure. Post-hP4 structures remain unexplored, but they are important for addressing the question of the pressure at which Na reverts to a metal. Here, we report the reentrant metallicity of Na at the very high pressure of 15.5 terapascal (TPa), predicted using first-principles structure searching simulations. Na is therefore insulating over the large pressure range of 0.2-15.5 TPa. Unusually, Na adopts an oP8 structure at pressures of 117-125 GPa and the same oP8 structure at 1.75-15.5 TPa. The metallization of Na occurs on ...
closo-Borates, such as Na2B12H12, are an emerging class of ionic conductors that show promising chem...
Based on the density functional theory, we systematically study the optical and electronic propertie...
Group I/II materials exhibit unexpected structural phase transitions at high pressures, providing po...
At ambient conditions, the light alkali metals are free-electron-like crystals with a highly symmetr...
At ambient conditions, the light alkali metals are free-electron like crystals with a highly symmetr...
At ambient conditions, lithium and sodium behave as free-electron metals and adopt highly symmetric ...
Sodium chloride (NaCl) is known as salt and an ionic insulator at ambient conditions. The high-press...
The alkali elements at ambient conditions are well described by the nearly-free electron (NFE) mode...
Under compression, “‘simple’” alkali metals and their alloys exhibit complex structural and electron...
X-ray diffraction experiments have shown that sodium exhibits a dramatic pressure-induced drop in me...
By first-principles methods we analyze the optical response of transparent dense sodium as a functio...
A series of recent x-ray diffraction experiments carried out by scientists from the Max-Planck-Insti...
ConspectusElectrides, in which electrons occupy interstitial regions in the crystal and behave as an...
The Na-P and Li-P chemical systems were studied under pressure using synchrotron X-ray diffraction i...
X-ray diffraction experiments carried out on alkali metals under high pressure have provided new ins...
closo-Borates, such as Na2B12H12, are an emerging class of ionic conductors that show promising chem...
Based on the density functional theory, we systematically study the optical and electronic propertie...
Group I/II materials exhibit unexpected structural phase transitions at high pressures, providing po...
At ambient conditions, the light alkali metals are free-electron-like crystals with a highly symmetr...
At ambient conditions, the light alkali metals are free-electron like crystals with a highly symmetr...
At ambient conditions, lithium and sodium behave as free-electron metals and adopt highly symmetric ...
Sodium chloride (NaCl) is known as salt and an ionic insulator at ambient conditions. The high-press...
The alkali elements at ambient conditions are well described by the nearly-free electron (NFE) mode...
Under compression, “‘simple’” alkali metals and their alloys exhibit complex structural and electron...
X-ray diffraction experiments have shown that sodium exhibits a dramatic pressure-induced drop in me...
By first-principles methods we analyze the optical response of transparent dense sodium as a functio...
A series of recent x-ray diffraction experiments carried out by scientists from the Max-Planck-Insti...
ConspectusElectrides, in which electrons occupy interstitial regions in the crystal and behave as an...
The Na-P and Li-P chemical systems were studied under pressure using synchrotron X-ray diffraction i...
X-ray diffraction experiments carried out on alkali metals under high pressure have provided new ins...
closo-Borates, such as Na2B12H12, are an emerging class of ionic conductors that show promising chem...
Based on the density functional theory, we systematically study the optical and electronic propertie...
Group I/II materials exhibit unexpected structural phase transitions at high pressures, providing po...