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[HTML][HTML] Aspects of the synthesis of thin film superconducting infinite-layer nickelates
The recent observation of superconductivity in Nd 0.8 Sr 0.2 NiO 2 calls for further
investigation and optimization of the synthesis of this infinite-layer nickelate structure. Here …
investigation and optimization of the synthesis of this infinite-layer nickelate structure. Here …
Soft X-ray spectroscopy of low-valence nickelates
Low-valence nickelates—including infinite-layer (IL) and trilayer (TL) compounds—are
longstanding candidates for mimicking the high-temperature superconductivity of cuprates …
longstanding candidates for mimicking the high-temperature superconductivity of cuprates …
Quantifying the role of the lattice in metal–insulator phase transitions
Many materials exhibit phase transitions at which both the electronic properties and the
crystal structure change. Some authors have argued that the change in electronic order is …
crystal structure change. Some authors have argued that the change in electronic order is …
Antiferromagnetism in Ni‐Based Superconductors
Due to the lack of any magnetic order down to 1.7 K in the parent bulk compound NdNiO2,
the recently discovered 9–15 K superconductivity in the infinite‐layer Nd0. 8Sr0. 2NiO2 thin …
the recently discovered 9–15 K superconductivity in the infinite‐layer Nd0. 8Sr0. 2NiO2 thin …
Database, features, and machine learning model to identify thermally driven metal–insulator transition compounds
Metal–insulator transition (MIT) compounds are materials that may exhibit metallic or
insulating behavior, depending on the physical conditions, and are of immense fundamental …
insulating behavior, depending on the physical conditions, and are of immense fundamental …
Spatially controlled octahedral rotations and metal–insulator transitions in nickelate superlattices
The properties of correlated oxides can be manipulated by forming short-period
superlattices since the layer thicknesses are comparable with the typical length scales of the …
superlattices since the layer thicknesses are comparable with the typical length scales of the …
Disentangling lattice and electronic contributions to the metal–insulator transition from bulk vs. layer confined RNiO3
In complex oxide materials, changes in electronic properties are often associated with
changes in crystal structure, raising the question of the relative roles of the electronic and …
changes in crystal structure, raising the question of the relative roles of the electronic and …
Three generations of infinite-layer nickelate crystals
Topotactic transformations between related crystal structures represent a powerful method
for synthesizing novel quantum materials. In particular, the groundbreaking discovery of …
for synthesizing novel quantum materials. In particular, the groundbreaking discovery of …
Dimensionality‐Controlled Evolution of Charge‐Transfer Energy in Digital Nickelates Superlattices
Fundamental understanding and control of the electronic structure evolution in rare‐earth
nickelates is a fascinating and meaningful issue, as well as being helpful to understand the …
nickelates is a fascinating and meaningful issue, as well as being helpful to understand the …
Epitaxial strain modulated electronic properties of interface controlled nickelate superlattices
Perovskite nickelate heterostructures consisting of single unit cells of EuNiO 3 and LaNiO 3
have been grown on a set of single crystalline substrates by pulsed laser interval deposition …
have been grown on a set of single crystalline substrates by pulsed laser interval deposition …